Study of the semileptonic decay D 0 → K ¯ 0 π − e + ν e $$ {D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e $$

Abstract We report an improved study of the semileptonic decay D 0 → K ¯ 0 π − e + ν e $$ {D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e $$ based on a sample of 7.9 fb −1 of e + e − annihilation data collected at a center-of-mass energy of 3.773 GeV with the BESIII detector at the BEPCII collider....

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Main Authors: The BESIII collaboration, M. Ablikim, M. N. Achasov, P. Adlarson, O. Afedulidis, X. C. Ai, R. Aliberti, A. Amoroso, Y. Bai, O. Bakina, I. Balossino, Y. Ban, H.-R. Bao, V. Batozskaya, K. Begzsuren, N. Berger, M. Berlowski, M. Bertani, D. Bettoni, F. Bianchi, E. Bianco, A. Bortone, I. Boyko, R. A. Briere, A. Brueggemann, H. Cai, X. Cai, A. Calcaterra, G. F. Cao, N. Cao, S. A. Cetin, X. Y. Chai, J. F. Chang, G. R. Che, Y. Z. Che, G. Chelkov, C. Chen, C. H. Chen, Chao Chen, G. Chen, H. S. Chen, H. Y. Chen, M. L. Chen, S. J. Chen, S. L. Chen, S. M. Chen, T. Chen, X. R. Chen, X. T. Chen, Y. B. Chen, Y. Q. Chen, Z. J. Chen, S. K. Choi, G. Cibinetto, F. Cossio, J. J. Cui, H. L. Dai, J. P. Dai, A. Dbeyssi, R. E. de Boer, D. Dedovich, C. Q. Deng, Z. Y. Deng, A. Denig, I. Denysenko, M. Destefanis, F. De Mori, B. Ding, X. X. Ding, Y. Ding, J. Dong, L. Y. Dong, M. Y. Dong, X. Dong, M. C. Du, S. X. Du, Y. Y. Duan, Z. H. Duan, P. Egorov, G. F. Fan, J. J. Fan, Y. H. Fan, J. Fang, S. S. Fang, W. X. Fang, Y. Fang, Y. Q. Fang, R. Farinelli, L. Fava, F. Feldbauer, G. Felici, C. Q. Feng, J. H. Feng, Y. T. Feng, M. Fritsch, C. D. Fu, J. L. Fu, Y. W. Fu, H. Gao, X. B. Gao, Y. N. Gao, Yang Gao, S. Garbolino, I. Garzia, P. T. Ge, Z. W. Ge, C. Geng, E. M. Gersabeck, A. Gilman, K. Goetzen, L. Gong, W. X. Gong, W. Gradl, S. Gramigna, M. Greco, M. H. Gu, Y. T. Gu, C. Y. Guan, A. Q. Guo, L. B. Guo, M. J. Guo, R. P. Guo, Y. P. Guo, A. Guskov, J. Gutierrez, K. L. Han, T. T. Han, F. Hanisch, X. Q. Hao, F. A. Harris, K. K. He, K. L. He, F. H. Heinsius, C. H. Heinz, Y. K. Heng, C. Herold, T. Holtmann, P. C. Hong, G. Y. Hou, X. T. Hou, Y. R. Hou, Z. L. Hou, B. Y. Hu, H. M. Hu, J. F. Hu, Q. P. Hu, S. L. Hu, T. Hu, Y. Hu, G. S. Huang, K. X. Huang, L. Q. Huang, P. Huang, X. T. Huang, Y. P. Huang, Y. S. Huang, T. Hussain, F. Hölzken, N. Hüsken, N. in der Wiesche, J. Jackson, S. Janchiv, Q. Ji, Q. P. Ji, W. Ji, X. B. Ji, X. L. Ji, Y. Y. Ji, X. Q. Jia, Z. K. Jia, D. Jiang, H. B. Jiang, P. C. Jiang, S. S. Jiang, T. J. Jiang, X. S. Jiang, Y. Jiang, J. B. Jiao, J. K. Jiao, Z. Jiao, S. Jin, Y. Jin, M. Q. Jing, X. M. Jing, T. Johansson, S. Kabana, N. Kalantar-Nayestanaki, X. L. Kang, X. S. Kang, M. Kavatsyuk, B. C. Ke, V. Khachatryan, A. Khoukaz, R. Kiuchi, O. B. Kolcu, B. Kopf, M. Kuessner, X. Kui, N. Kumar, A. Kupsc, W. Kühn, W. N. Lan, T. T. Lei, Z. H. Lei, M. Lellmann, T. Lenz, C. Li, C. H. Li, Cheng Li, D. M. Li, F. Li, G. Li, H. B. Li, H. J. Li, H. N. Li, Hui Li, J. R. Li, J. S. Li, K. Li, K. L. Li, L. J. Li, L. K. Li, Lei Li, M. H. Li, P. L. Li, P. R. Li, Q. M. Li, Q. X. Li, R. Li, T. Li, T. Y. Li, W. D. Li, W. G. Li, X. Li, X. H. Li, X. L. Li, X. Y. Li, X. Z. Li, Y. Li, Y. G. Li, Z. J. Li, Z. Y. Li, C. Liang, H. Liang, Y. F. Liang, Y. T. Liang, G. R. Liao, Y. P. Liao, J. Libby, A. Limphirat, C. C. Lin, C. X. Lin, D. X. Lin, T. Lin, B. J. Liu, B. X. Liu, C. Liu, C. X. Liu, F. Liu, F. H. Liu, Feng Liu, G. M. Liu, H. Liu, H. B. Liu, H. H. Liu, H. M. Liu, Huihui Liu, J. B. Liu, J. Y. Liu, K. Liu, K. Y. Liu, Ke Liu, L. Liu, L. C. Liu, Lu Liu, M. H. Liu, P. L. Liu, Q. Liu, S. B. Liu, T. Liu, W. K. Liu, W. M. Liu, X. Liu, Y. Liu, Y. B. Liu, Z. A. Liu, Z. D. Liu, Z. Q. Liu, X. C. Lou, F. X. Lu, H. J. Lu, J. G. Lu, Y. Lu, Y. P. Lu, Z. H. Lu, C. L. Luo, J. R. Luo, M. X. Luo, T. Luo, X. L. Luo, X. R. Lyu, Y. F. Lyu, F. C. Ma, H. Ma, H. L. Ma, J. L. Ma, L. L. Ma, L. R. Ma, M. M. Ma, Q. M. Ma, R. Q. Ma, R. Y. Ma, T. Ma, X. T. Ma, X. Y. Ma, Y. M. Ma, F. E. Maas, I. MacKay, M. Maggiora, S. Malde, Y. J. Mao, Z. P. Mao, S. Marcello, Y. H. Meng, Z. X. Meng, J. G. Messchendorp, G. Mezzadri, H. Miao, T. J. Min, R. E. Mitchell, X. H. Mo, B. Moses, N. Yu. Muchnoi, J. Muskalla, Y. Nefedov, F. Nerling, L. S. Nie, I. B. Nikolaev, Z. Ning, S. Nisar, Q. L. Niu, W. D. Niu, Y. Niu, S. L. Olsen, Q. Ouyang, S. Pacetti, X. Pan, Y. Pan, A. Pathak, Y. P. Pei, M. Pelizaeus, H. P. Peng, Y. Y. Peng, K. Peters, J. L. Ping, R. G. Ping, S. Plura, V. Prasad, F. Z. Qi, H. Qi, H. R. Qi, M. Qi, S. Qian, W. B. Qian, C. F. Qiao, J. H. Qiao, J. J. Qin, L. Q. Qin, L. Y. Qin, X. P. Qin, X. S. Qin, Z. H. Qin, J. F. Qiu, Z. H. Qu, C. F. Redmer, K. J. Ren, A. Rivetti, M. Rolo, G. Rong, Ch. Rosner, M. Q. Ruan, S. N. Ruan, N. Salone, A. Sarantsev, Y. Schelhaas, K. Schoenning, M. Scodeggio, K. Y. Shan, W. Shan, X. Y. Shan, Z. J. Shang, J. F. Shangguan, L. G. Shao, M. Shao, C. P. Shen, H. F. Shen, W. H. Shen, X. Y. Shen, B. A. Shi, H. Shi, J. L. Shi, J. Y. Shi, S. Y. Shi, X. Shi, J. J. Song, T. Z. Song, W. M. Song, Y. J. Song, Y. X. Song, S. Sosio, S. Spataro, F. Stieler, S. S Su, Y. J. Su, G. B. Sun, G. X. Sun, H. Sun, H. K. Sun, J. F. Sun, K. Sun, L. Sun, S. S. Sun, T. Sun, Y. J. Sun, Y. Z. Sun, Z. Q. Sun, Z. T. Sun, C. J. Tang, G. Y. Tang, J. Tang, M. Tang, Y. A. Tang, L. Y. Tao, M. Tat, J. X. Teng, V. Thoren, W. H. Tian, Y. Tian, Z. F. Tian, I. Uman, Y. Wan, S. J. Wang, B. Wang, Bo Wang, C. Wang, D. Y. Wang, H. J. Wang, J. J. Wang, J. P. Wang, K. Wang, L. L. Wang, L. W. Wang, M. Wang, N. Y. Wang, S. Wang, T. Wang, T. J. Wang, W. Wang, W. P. Wang, X. Wang, X. F. Wang, X. J. Wang, X. L. Wang, X. N. Wang, Y. Wang, Y. D. Wang, Y. F. Wang, Y. H. Wang, Y. L. Wang, Y. N. Wang, Y. Q. Wang, Yaqian Wang, Yi Wang, Z. Wang, Z. L. Wang, Z. Y. Wang, D. H. Wei, F. Weidner, S. P. Wen, Y. R. Wen, U. Wiedner, G. Wilkinson, M. Wolke, L. Wollenberg, C. Wu, J. F. Wu, L. H. Wu, L. J. Wu, Lianjie Wu, X. Wu, X. H. Wu, Y. H. Wu, Y. J. Wu, Z. Wu, L. Xia, X. M. Xian, B. H. Xiang, T. Xiang, D. Xiao, G. Y. Xiao, H. Xiao, S. Y. Xiao, Y. L. Xiao, Z. J. Xiao, C. Xie, X. H. Xie, Y. Xie, Y. G. Xie, Y. H. Xie, Z. P. Xie, T. Y. Xing, C. F. Xu, C. J. Xu, G. F. Xu, M. Xu, Q. J. Xu, Q. N. Xu, W. L. Xu, X. P. Xu, Y. Xu, Y. C. Xu, Z. S. Xu, F. Yan, L. Yan, W. B. Yan, W. C. Yan, W. P. Yan, X. Q. Yan, H. J. Yang, H. L. Yang, H. X. Yang, J. H. Yang, R. J. Yang, T. Yang, Y. Yang, Y. F. Yang, Y. X. Yang, Y. Z. Yang, Z. W. Yang, Z. P. Yao, M. Ye, M. H. Ye, J. H. Yin, Junhao Yin, Z. Y. You, B. X. Yu, C. X. Yu, G. Yu, J. S. Yu, M. C. Yu, T. Yu, X. D. Yu, C. Z. Yuan, J. Yuan, L. Yuan, S. C. Yuan, Y. Yuan, Z. Y. Yuan, C. X. Yue, Ying Yue, A. A. Zafar, F. R. Zeng, S. H. Zeng, X. Zeng, Y. Zeng, Y. J. Zeng, X. Y. Zhai, Y. C. Zhai, Y. H. Zhan, A. Q. Zhang, B. L. Zhang, B. X. Zhang, D. H. Zhang, G. Y. Zhang, H. Zhang, H. C. Zhang, H. H. Zhang, H. Q. Zhang, H. R. Zhang, H. Y. Zhang, J. Zhang, J. J. Zhang, J. L. Zhang, J. Q. Zhang, J. S. Zhang, J. W. Zhang, J. X. Zhang, J. Y. Zhang, J. Z. Zhang, Jianyu Zhang, L. M. Zhang, Lei Zhang, P. Zhang, Q. Zhang, Q. Y. Zhang, R. Y. Zhang, S. H. Zhang, Shulei Zhang, X. M. Zhang, X. Y Zhang, X. Y. Zhang, Y. Zhang, Y. T. Zhang, Y. H. Zhang, Y. M. Zhang, Yan Zhang, Z. D. Zhang, Z. H. Zhang, Z. L. Zhang, Z. X. Zhang, Z. Y. Zhang, Z. Z. Zhang, Zh. Zh. Zhang, G. Zhao, J. Y. Zhao, J. Z. Zhao, L. Zhao, Lei Zhao, M. G. Zhao, N. Zhao, R. P. Zhao, S. J. Zhao, Y. B. Zhao, Y. X. Zhao, Z. G. Zhao, A. Zhemchugov, B. Zheng, B. M. Zheng, J. P. Zheng, W. J. Zheng, X. R. Zheng, Y. H. Zheng, B. Zhong, X. Zhong, H. Zhou, J. Y. Zhou, L. P. Zhou, S. Zhou, X. Zhou, X. K. Zhou, X. R. Zhou, X. Y. Zhou, Y. Z. Zhou, Z. C. Zhou, A. N. Zhu, J. Zhu, K. Zhu, K. J. Zhu, K. S. Zhu, L. Zhu, L. X. Zhu, S. H. Zhu, T. J. Zhu, W. D. Zhu, W. Z. Zhu, Y. C. Zhu, Z. A. Zhu, J. H. Zou, J. Zu
Format: Article
Language:English
Published: SpringerOpen 2025-03-01
Series:Journal of High Energy Physics
Subjects:
Online Access:https://doi.org/10.1007/JHEP03(2025)197
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_version_ 1850202733434372096
author The BESIII collaboration
M. Ablikim
M. N. Achasov
P. Adlarson
O. Afedulidis
X. C. Ai
R. Aliberti
A. Amoroso
Y. Bai
O. Bakina
I. Balossino
Y. Ban
H.-R. Bao
V. Batozskaya
K. Begzsuren
N. Berger
M. Berlowski
M. Bertani
D. Bettoni
F. Bianchi
E. Bianco
A. Bortone
I. Boyko
R. A. Briere
A. Brueggemann
H. Cai
X. Cai
A. Calcaterra
G. F. Cao
N. Cao
S. A. Cetin
X. Y. Chai
J. F. Chang
G. R. Che
Y. Z. Che
G. Chelkov
C. Chen
C. H. Chen
Chao Chen
G. Chen
H. S. Chen
H. Y. Chen
M. L. Chen
S. J. Chen
S. L. Chen
S. M. Chen
T. Chen
X. R. Chen
X. T. Chen
Y. B. Chen
Y. Q. Chen
Z. J. Chen
S. K. Choi
G. Cibinetto
F. Cossio
J. J. Cui
H. L. Dai
J. P. Dai
A. Dbeyssi
R. E. de Boer
D. Dedovich
C. Q. Deng
Z. Y. Deng
A. Denig
I. Denysenko
M. Destefanis
F. De Mori
B. Ding
X. X. Ding
Y. Ding
Y. Ding
J. Dong
L. Y. Dong
M. Y. Dong
X. Dong
M. C. Du
S. X. Du
Y. Y. Duan
Z. H. Duan
P. Egorov
G. F. Fan
J. J. Fan
Y. H. Fan
J. Fang
J. Fang
S. S. Fang
W. X. Fang
Y. Fang
Y. Q. Fang
R. Farinelli
L. Fava
F. Feldbauer
G. Felici
C. Q. Feng
J. H. Feng
Y. T. Feng
M. Fritsch
C. D. Fu
J. L. Fu
Y. W. Fu
H. Gao
X. B. Gao
Y. N. Gao
Y. N. Gao
Yang Gao
S. Garbolino
I. Garzia
P. T. Ge
Z. W. Ge
C. Geng
E. M. Gersabeck
A. Gilman
K. Goetzen
L. Gong
W. X. Gong
W. Gradl
S. Gramigna
M. Greco
M. H. Gu
Y. T. Gu
C. Y. Guan
A. Q. Guo
L. B. Guo
M. J. Guo
R. P. Guo
Y. P. Guo
A. Guskov
J. Gutierrez
K. L. Han
T. T. Han
F. Hanisch
X. Q. Hao
F. A. Harris
K. K. He
K. L. He
F. H. Heinsius
C. H. Heinz
Y. K. Heng
C. Herold
T. Holtmann
P. C. Hong
G. Y. Hou
X. T. Hou
Y. R. Hou
Z. L. Hou
B. Y. Hu
H. M. Hu
J. F. Hu
Q. P. Hu
S. L. Hu
T. Hu
Y. Hu
G. S. Huang
K. X. Huang
L. Q. Huang
P. Huang
X. T. Huang
Y. P. Huang
Y. S. Huang
T. Hussain
F. Hölzken
N. Hüsken
N. in der Wiesche
J. Jackson
S. Janchiv
Q. Ji
Q. P. Ji
W. Ji
X. B. Ji
X. L. Ji
Y. Y. Ji
X. Q. Jia
Z. K. Jia
D. Jiang
H. B. Jiang
P. C. Jiang
S. S. Jiang
T. J. Jiang
X. S. Jiang
Y. Jiang
J. B. Jiao
J. K. Jiao
Z. Jiao
S. Jin
Y. Jin
M. Q. Jing
X. M. Jing
T. Johansson
S. Kabana
N. Kalantar-Nayestanaki
X. L. Kang
X. S. Kang
M. Kavatsyuk
B. C. Ke
V. Khachatryan
A. Khoukaz
R. Kiuchi
O. B. Kolcu
B. Kopf
M. Kuessner
X. Kui
N. Kumar
A. Kupsc
W. Kühn
W. N. Lan
T. T. Lei
Z. H. Lei
M. Lellmann
T. Lenz
C. Li
C. Li
C. H. Li
Cheng Li
D. M. Li
F. Li
G. Li
H. B. Li
H. J. Li
H. N. Li
Hui Li
J. R. Li
J. S. Li
K. Li
K. L. Li
L. J. Li
L. K. Li
Lei Li
M. H. Li
P. L. Li
P. R. Li
Q. M. Li
Q. X. Li
R. Li
T. Li
T. Y. Li
W. D. Li
W. G. Li
X. Li
X. H. Li
X. L. Li
X. Y. Li
X. Z. Li
Y. Li
Y. G. Li
Z. J. Li
Z. Y. Li
C. Liang
H. Liang
H. Liang
Y. F. Liang
Y. T. Liang
G. R. Liao
Y. P. Liao
J. Libby
A. Limphirat
C. C. Lin
C. X. Lin
D. X. Lin
T. Lin
B. J. Liu
B. X. Liu
C. Liu
C. X. Liu
F. Liu
F. H. Liu
Feng Liu
G. M. Liu
H. Liu
H. B. Liu
H. H. Liu
H. M. Liu
Huihui Liu
J. B. Liu
J. Y. Liu
K. Liu
K. Y. Liu
Ke Liu
L. Liu
L. C. Liu
Lu Liu
M. H. Liu
P. L. Liu
Q. Liu
S. B. Liu
T. Liu
W. K. Liu
W. M. Liu
X. Liu
X. Liu
Y. Liu
Y. Liu
Y. B. Liu
Z. A. Liu
Z. D. Liu
Z. Q. Liu
X. C. Lou
F. X. Lu
H. J. Lu
J. G. Lu
Y. Lu
Y. P. Lu
Z. H. Lu
C. L. Luo
J. R. Luo
M. X. Luo
T. Luo
X. L. Luo
X. R. Lyu
Y. F. Lyu
F. C. Ma
H. Ma
H. L. Ma
J. L. Ma
L. L. Ma
L. R. Ma
M. M. Ma
Q. M. Ma
R. Q. Ma
R. Y. Ma
T. Ma
X. T. Ma
X. Y. Ma
Y. M. Ma
F. E. Maas
I. MacKay
M. Maggiora
S. Malde
Y. J. Mao
Z. P. Mao
S. Marcello
Y. H. Meng
Z. X. Meng
J. G. Messchendorp
G. Mezzadri
H. Miao
T. J. Min
R. E. Mitchell
X. H. Mo
B. Moses
N. Yu. Muchnoi
J. Muskalla
Y. Nefedov
F. Nerling
L. S. Nie
I. B. Nikolaev
Z. Ning
S. Nisar
Q. L. Niu
W. D. Niu
Y. Niu
S. L. Olsen
Q. Ouyang
S. Pacetti
X. Pan
Y. Pan
A. Pathak
Y. P. Pei
M. Pelizaeus
H. P. Peng
Y. Y. Peng
K. Peters
J. L. Ping
R. G. Ping
S. Plura
V. Prasad
F. Z. Qi
H. Qi
H. R. Qi
M. Qi
S. Qian
W. B. Qian
C. F. Qiao
J. H. Qiao
J. J. Qin
L. Q. Qin
L. Y. Qin
X. P. Qin
X. S. Qin
Z. H. Qin
J. F. Qiu
Z. H. Qu
C. F. Redmer
K. J. Ren
A. Rivetti
M. Rolo
G. Rong
Ch. Rosner
M. Q. Ruan
S. N. Ruan
N. Salone
A. Sarantsev
Y. Schelhaas
K. Schoenning
M. Scodeggio
K. Y. Shan
W. Shan
X. Y. Shan
Z. J. Shang
J. F. Shangguan
L. G. Shao
M. Shao
C. P. Shen
H. F. Shen
W. H. Shen
X. Y. Shen
B. A. Shi
H. Shi
J. L. Shi
J. Y. Shi
S. Y. Shi
X. Shi
J. J. Song
T. Z. Song
W. M. Song
Y. J. Song
Y. X. Song
S. Sosio
S. Spataro
F. Stieler
S. S Su
Y. J. Su
G. B. Sun
G. X. Sun
H. Sun
H. K. Sun
J. F. Sun
K. Sun
L. Sun
S. S. Sun
T. Sun
Y. J. Sun
Y. Z. Sun
Z. Q. Sun
Z. T. Sun
C. J. Tang
G. Y. Tang
J. Tang
M. Tang
Y. A. Tang
L. Y. Tao
M. Tat
J. X. Teng
V. Thoren
W. H. Tian
Y. Tian
Z. F. Tian
I. Uman
Y. Wan
S. J. Wang
B. Wang
Bo Wang
C. Wang
D. Y. Wang
H. J. Wang
J. J. Wang
J. P. Wang
K. Wang
L. L. Wang
L. W. Wang
M. Wang
N. Y. Wang
S. Wang
S. Wang
T. Wang
T. J. Wang
W. Wang
W. Wang
W. P. Wang
X. Wang
X. F. Wang
X. J. Wang
X. L. Wang
X. N. Wang
Y. Wang
Y. D. Wang
Y. F. Wang
Y. H. Wang
Y. L. Wang
Y. N. Wang
Y. Q. Wang
Yaqian Wang
Yi Wang
Z. Wang
Z. L. Wang
Z. Y. Wang
D. H. Wei
F. Weidner
S. P. Wen
Y. R. Wen
U. Wiedner
G. Wilkinson
M. Wolke
L. Wollenberg
C. Wu
J. F. Wu
L. H. Wu
L. J. Wu
Lianjie Wu
X. Wu
X. H. Wu
Y. H. Wu
Y. J. Wu
Z. Wu
L. Xia
X. M. Xian
B. H. Xiang
T. Xiang
D. Xiao
G. Y. Xiao
H. Xiao
S. Y. Xiao
Y. L. Xiao
Z. J. Xiao
C. Xie
X. H. Xie
Y. Xie
Y. G. Xie
Y. H. Xie
Z. P. Xie
T. Y. Xing
C. F. Xu
C. J. Xu
G. F. Xu
M. Xu
Q. J. Xu
Q. N. Xu
W. L. Xu
X. P. Xu
Y. Xu
Y. C. Xu
Z. S. Xu
F. Yan
L. Yan
W. B. Yan
W. C. Yan
W. P. Yan
X. Q. Yan
H. J. Yang
H. L. Yang
H. X. Yang
J. H. Yang
R. J. Yang
T. Yang
Y. Yang
Y. F. Yang
Y. F. Yang
Y. X. Yang
Y. Z. Yang
Z. W. Yang
Z. P. Yao
M. Ye
M. H. Ye
J. H. Yin
Junhao Yin
Z. Y. You
B. X. Yu
C. X. Yu
G. Yu
J. S. Yu
M. C. Yu
T. Yu
X. D. Yu
C. Z. Yuan
J. Yuan
J. Yuan
L. Yuan
S. C. Yuan
Y. Yuan
Z. Y. Yuan
C. X. Yue
Ying Yue
A. A. Zafar
F. R. Zeng
S. H. Zeng
X. Zeng
Y. Zeng
Y. J. Zeng
Y. J. Zeng
X. Y. Zhai
Y. C. Zhai
Y. H. Zhan
A. Q. Zhang
B. L. Zhang
B. X. Zhang
D. H. Zhang
G. Y. Zhang
H. Zhang
H. Zhang
H. C. Zhang
H. H. Zhang
H. Q. Zhang
H. R. Zhang
H. Y. Zhang
J. Zhang
J. Zhang
J. J. Zhang
J. L. Zhang
J. Q. Zhang
J. S. Zhang
J. W. Zhang
J. X. Zhang
J. Y. Zhang
J. Z. Zhang
Jianyu Zhang
L. M. Zhang
Lei Zhang
P. Zhang
Q. Zhang
Q. Y. Zhang
R. Y. Zhang
S. H. Zhang
Shulei Zhang
X. M. Zhang
X. Y Zhang
X. Y. Zhang
Y. Zhang
Y. Zhang
Y. T. Zhang
Y. H. Zhang
Y. M. Zhang
Yan Zhang
Z. D. Zhang
Z. H. Zhang
Z. L. Zhang
Z. X. Zhang
Z. Y. Zhang
Z. Y. Zhang
Z. Z. Zhang
Zh. Zh. Zhang
G. Zhao
J. Y. Zhao
J. Z. Zhao
L. Zhao
Lei Zhao
M. G. Zhao
N. Zhao
R. P. Zhao
S. J. Zhao
Y. B. Zhao
Y. X. Zhao
Z. G. Zhao
A. Zhemchugov
B. Zheng
B. M. Zheng
J. P. Zheng
W. J. Zheng
X. R. Zheng
Y. H. Zheng
B. Zhong
X. Zhong
H. Zhou
J. Y. Zhou
L. P. Zhou
S. Zhou
X. Zhou
X. K. Zhou
X. R. Zhou
X. Y. Zhou
Y. Z. Zhou
Z. C. Zhou
A. N. Zhu
J. Zhu
K. Zhu
K. J. Zhu
K. S. Zhu
L. Zhu
L. X. Zhu
S. H. Zhu
T. J. Zhu
W. D. Zhu
W. Z. Zhu
Y. C. Zhu
Z. A. Zhu
J. H. Zou
J. Zu
author_facet The BESIII collaboration
M. Ablikim
M. N. Achasov
P. Adlarson
O. Afedulidis
X. C. Ai
R. Aliberti
A. Amoroso
Y. Bai
O. Bakina
I. Balossino
Y. Ban
H.-R. Bao
V. Batozskaya
K. Begzsuren
N. Berger
M. Berlowski
M. Bertani
D. Bettoni
F. Bianchi
E. Bianco
A. Bortone
I. Boyko
R. A. Briere
A. Brueggemann
H. Cai
X. Cai
A. Calcaterra
G. F. Cao
N. Cao
S. A. Cetin
X. Y. Chai
J. F. Chang
G. R. Che
Y. Z. Che
G. Chelkov
C. Chen
C. H. Chen
Chao Chen
G. Chen
H. S. Chen
H. Y. Chen
M. L. Chen
S. J. Chen
S. L. Chen
S. M. Chen
T. Chen
X. R. Chen
X. T. Chen
Y. B. Chen
Y. Q. Chen
Z. J. Chen
S. K. Choi
G. Cibinetto
F. Cossio
J. J. Cui
H. L. Dai
J. P. Dai
A. Dbeyssi
R. E. de Boer
D. Dedovich
C. Q. Deng
Z. Y. Deng
A. Denig
I. Denysenko
M. Destefanis
F. De Mori
B. Ding
X. X. Ding
Y. Ding
Y. Ding
J. Dong
L. Y. Dong
M. Y. Dong
X. Dong
M. C. Du
S. X. Du
Y. Y. Duan
Z. H. Duan
P. Egorov
G. F. Fan
J. J. Fan
Y. H. Fan
J. Fang
J. Fang
S. S. Fang
W. X. Fang
Y. Fang
Y. Q. Fang
R. Farinelli
L. Fava
F. Feldbauer
G. Felici
C. Q. Feng
J. H. Feng
Y. T. Feng
M. Fritsch
C. D. Fu
J. L. Fu
Y. W. Fu
H. Gao
X. B. Gao
Y. N. Gao
Y. N. Gao
Yang Gao
S. Garbolino
I. Garzia
P. T. Ge
Z. W. Ge
C. Geng
E. M. Gersabeck
A. Gilman
K. Goetzen
L. Gong
W. X. Gong
W. Gradl
S. Gramigna
M. Greco
M. H. Gu
Y. T. Gu
C. Y. Guan
A. Q. Guo
L. B. Guo
M. J. Guo
R. P. Guo
Y. P. Guo
A. Guskov
J. Gutierrez
K. L. Han
T. T. Han
F. Hanisch
X. Q. Hao
F. A. Harris
K. K. He
K. L. He
F. H. Heinsius
C. H. Heinz
Y. K. Heng
C. Herold
T. Holtmann
P. C. Hong
G. Y. Hou
X. T. Hou
Y. R. Hou
Z. L. Hou
B. Y. Hu
H. M. Hu
J. F. Hu
Q. P. Hu
S. L. Hu
T. Hu
Y. Hu
G. S. Huang
K. X. Huang
L. Q. Huang
P. Huang
X. T. Huang
Y. P. Huang
Y. S. Huang
T. Hussain
F. Hölzken
N. Hüsken
N. in der Wiesche
J. Jackson
S. Janchiv
Q. Ji
Q. P. Ji
W. Ji
X. B. Ji
X. L. Ji
Y. Y. Ji
X. Q. Jia
Z. K. Jia
D. Jiang
H. B. Jiang
P. C. Jiang
S. S. Jiang
T. J. Jiang
X. S. Jiang
Y. Jiang
J. B. Jiao
J. K. Jiao
Z. Jiao
S. Jin
Y. Jin
M. Q. Jing
X. M. Jing
T. Johansson
S. Kabana
N. Kalantar-Nayestanaki
X. L. Kang
X. S. Kang
M. Kavatsyuk
B. C. Ke
V. Khachatryan
A. Khoukaz
R. Kiuchi
O. B. Kolcu
B. Kopf
M. Kuessner
X. Kui
N. Kumar
A. Kupsc
W. Kühn
W. N. Lan
T. T. Lei
Z. H. Lei
M. Lellmann
T. Lenz
C. Li
C. Li
C. H. Li
Cheng Li
D. M. Li
F. Li
G. Li
H. B. Li
H. J. Li
H. N. Li
Hui Li
J. R. Li
J. S. Li
K. Li
K. L. Li
L. J. Li
L. K. Li
Lei Li
M. H. Li
P. L. Li
P. R. Li
Q. M. Li
Q. X. Li
R. Li
T. Li
T. Y. Li
W. D. Li
W. G. Li
X. Li
X. H. Li
X. L. Li
X. Y. Li
X. Z. Li
Y. Li
Y. G. Li
Z. J. Li
Z. Y. Li
C. Liang
H. Liang
H. Liang
Y. F. Liang
Y. T. Liang
G. R. Liao
Y. P. Liao
J. Libby
A. Limphirat
C. C. Lin
C. X. Lin
D. X. Lin
T. Lin
B. J. Liu
B. X. Liu
C. Liu
C. X. Liu
F. Liu
F. H. Liu
Feng Liu
G. M. Liu
H. Liu
H. B. Liu
H. H. Liu
H. M. Liu
Huihui Liu
J. B. Liu
J. Y. Liu
K. Liu
K. Y. Liu
Ke Liu
L. Liu
L. C. Liu
Lu Liu
M. H. Liu
P. L. Liu
Q. Liu
S. B. Liu
T. Liu
W. K. Liu
W. M. Liu
X. Liu
X. Liu
Y. Liu
Y. Liu
Y. B. Liu
Z. A. Liu
Z. D. Liu
Z. Q. Liu
X. C. Lou
F. X. Lu
H. J. Lu
J. G. Lu
Y. Lu
Y. P. Lu
Z. H. Lu
C. L. Luo
J. R. Luo
M. X. Luo
T. Luo
X. L. Luo
X. R. Lyu
Y. F. Lyu
F. C. Ma
H. Ma
H. L. Ma
J. L. Ma
L. L. Ma
L. R. Ma
M. M. Ma
Q. M. Ma
R. Q. Ma
R. Y. Ma
T. Ma
X. T. Ma
X. Y. Ma
Y. M. Ma
F. E. Maas
I. MacKay
M. Maggiora
S. Malde
Y. J. Mao
Z. P. Mao
S. Marcello
Y. H. Meng
Z. X. Meng
J. G. Messchendorp
G. Mezzadri
H. Miao
T. J. Min
R. E. Mitchell
X. H. Mo
B. Moses
N. Yu. Muchnoi
J. Muskalla
Y. Nefedov
F. Nerling
L. S. Nie
I. B. Nikolaev
Z. Ning
S. Nisar
Q. L. Niu
W. D. Niu
Y. Niu
S. L. Olsen
Q. Ouyang
S. Pacetti
X. Pan
Y. Pan
A. Pathak
Y. P. Pei
M. Pelizaeus
H. P. Peng
Y. Y. Peng
K. Peters
J. L. Ping
R. G. Ping
S. Plura
V. Prasad
F. Z. Qi
H. Qi
H. R. Qi
M. Qi
S. Qian
W. B. Qian
C. F. Qiao
J. H. Qiao
J. J. Qin
L. Q. Qin
L. Y. Qin
X. P. Qin
X. S. Qin
Z. H. Qin
J. F. Qiu
Z. H. Qu
C. F. Redmer
K. J. Ren
A. Rivetti
M. Rolo
G. Rong
Ch. Rosner
M. Q. Ruan
S. N. Ruan
N. Salone
A. Sarantsev
Y. Schelhaas
K. Schoenning
M. Scodeggio
K. Y. Shan
W. Shan
X. Y. Shan
Z. J. Shang
J. F. Shangguan
L. G. Shao
M. Shao
C. P. Shen
H. F. Shen
W. H. Shen
X. Y. Shen
B. A. Shi
H. Shi
J. L. Shi
J. Y. Shi
S. Y. Shi
X. Shi
J. J. Song
T. Z. Song
W. M. Song
Y. J. Song
Y. X. Song
S. Sosio
S. Spataro
F. Stieler
S. S Su
Y. J. Su
G. B. Sun
G. X. Sun
H. Sun
H. K. Sun
J. F. Sun
K. Sun
L. Sun
S. S. Sun
T. Sun
Y. J. Sun
Y. Z. Sun
Z. Q. Sun
Z. T. Sun
C. J. Tang
G. Y. Tang
J. Tang
M. Tang
Y. A. Tang
L. Y. Tao
M. Tat
J. X. Teng
V. Thoren
W. H. Tian
Y. Tian
Z. F. Tian
I. Uman
Y. Wan
S. J. Wang
B. Wang
Bo Wang
C. Wang
D. Y. Wang
H. J. Wang
J. J. Wang
J. P. Wang
K. Wang
L. L. Wang
L. W. Wang
M. Wang
N. Y. Wang
S. Wang
S. Wang
T. Wang
T. J. Wang
W. Wang
W. Wang
W. P. Wang
X. Wang
X. F. Wang
X. J. Wang
X. L. Wang
X. N. Wang
Y. Wang
Y. D. Wang
Y. F. Wang
Y. H. Wang
Y. L. Wang
Y. N. Wang
Y. Q. Wang
Yaqian Wang
Yi Wang
Z. Wang
Z. L. Wang
Z. Y. Wang
D. H. Wei
F. Weidner
S. P. Wen
Y. R. Wen
U. Wiedner
G. Wilkinson
M. Wolke
L. Wollenberg
C. Wu
J. F. Wu
L. H. Wu
L. J. Wu
Lianjie Wu
X. Wu
X. H. Wu
Y. H. Wu
Y. J. Wu
Z. Wu
L. Xia
X. M. Xian
B. H. Xiang
T. Xiang
D. Xiao
G. Y. Xiao
H. Xiao
S. Y. Xiao
Y. L. Xiao
Z. J. Xiao
C. Xie
X. H. Xie
Y. Xie
Y. G. Xie
Y. H. Xie
Z. P. Xie
T. Y. Xing
C. F. Xu
C. J. Xu
G. F. Xu
M. Xu
Q. J. Xu
Q. N. Xu
W. L. Xu
X. P. Xu
Y. Xu
Y. C. Xu
Z. S. Xu
F. Yan
L. Yan
W. B. Yan
W. C. Yan
W. P. Yan
X. Q. Yan
H. J. Yang
H. L. Yang
H. X. Yang
J. H. Yang
R. J. Yang
T. Yang
Y. Yang
Y. F. Yang
Y. F. Yang
Y. X. Yang
Y. Z. Yang
Z. W. Yang
Z. P. Yao
M. Ye
M. H. Ye
J. H. Yin
Junhao Yin
Z. Y. You
B. X. Yu
C. X. Yu
G. Yu
J. S. Yu
M. C. Yu
T. Yu
X. D. Yu
C. Z. Yuan
J. Yuan
J. Yuan
L. Yuan
S. C. Yuan
Y. Yuan
Z. Y. Yuan
C. X. Yue
Ying Yue
A. A. Zafar
F. R. Zeng
S. H. Zeng
X. Zeng
Y. Zeng
Y. J. Zeng
Y. J. Zeng
X. Y. Zhai
Y. C. Zhai
Y. H. Zhan
A. Q. Zhang
B. L. Zhang
B. X. Zhang
D. H. Zhang
G. Y. Zhang
H. Zhang
H. Zhang
H. C. Zhang
H. H. Zhang
H. Q. Zhang
H. R. Zhang
H. Y. Zhang
J. Zhang
J. Zhang
J. J. Zhang
J. L. Zhang
J. Q. Zhang
J. S. Zhang
J. W. Zhang
J. X. Zhang
J. Y. Zhang
J. Z. Zhang
Jianyu Zhang
L. M. Zhang
Lei Zhang
P. Zhang
Q. Zhang
Q. Y. Zhang
R. Y. Zhang
S. H. Zhang
Shulei Zhang
X. M. Zhang
X. Y Zhang
X. Y. Zhang
Y. Zhang
Y. Zhang
Y. T. Zhang
Y. H. Zhang
Y. M. Zhang
Yan Zhang
Z. D. Zhang
Z. H. Zhang
Z. L. Zhang
Z. X. Zhang
Z. Y. Zhang
Z. Y. Zhang
Z. Z. Zhang
Zh. Zh. Zhang
G. Zhao
J. Y. Zhao
J. Z. Zhao
L. Zhao
Lei Zhao
M. G. Zhao
N. Zhao
R. P. Zhao
S. J. Zhao
Y. B. Zhao
Y. X. Zhao
Z. G. Zhao
A. Zhemchugov
B. Zheng
B. M. Zheng
J. P. Zheng
W. J. Zheng
X. R. Zheng
Y. H. Zheng
B. Zhong
X. Zhong
H. Zhou
J. Y. Zhou
L. P. Zhou
S. Zhou
X. Zhou
X. K. Zhou
X. R. Zhou
X. Y. Zhou
Y. Z. Zhou
Z. C. Zhou
A. N. Zhu
J. Zhu
K. Zhu
K. J. Zhu
K. S. Zhu
L. Zhu
L. X. Zhu
S. H. Zhu
T. J. Zhu
W. D. Zhu
W. Z. Zhu
Y. C. Zhu
Z. A. Zhu
J. H. Zou
J. Zu
author_sort The BESIII collaboration
collection DOAJ
description Abstract We report an improved study of the semileptonic decay D 0 → K ¯ 0 π − e + ν e $$ {D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e $$ based on a sample of 7.9 fb −1 of e + e − annihilation data collected at a center-of-mass energy of 3.773 GeV with the BESIII detector at the BEPCII collider. The branching fraction of this decay is measured to be B D 0 → K ¯ 0 π − e + ν e $$ \mathcal{B}\left({D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e\right) $$ = (1.444 ± 0.022stat ± 0.024syst)%, which is the most precise to date, where the first uncertainty is statistical and the second is systematic. Based on investigation of the decay dynamics, we find that the decay is dominated by the K *(892) − component and present an improved measurement of its branching fraction to be B D 0 → K ∗ 892 − e + ν e $$ \mathcal{B}\left({D}^0\to {K}^{\ast }{(892)}^{-}{e}^{+}{\nu}_e\right) $$ = (2.039 ± 0.032stat ± 0.034syst)%. We also determine the ratios of the hadronic form factors for the K *(892) − e + ν e decay to be r V = V(0)/A 1(0) = 1.48 ± 0.05stat ± 0.02syst and r 2 = A 2(0)/A 1(0) = 0.70 ± 0.04stat ± 0.02syst, where V(0) is the vector form factor and A 1,2(0) are the axial form factors. In addition, the K ¯ 0 π − $$ {\overline{K}}^0{\pi}^{-} $$ S $$ \mathcal{S} $$ -wave component is found to account for (5.87 ± 0.32stat ± 0.16syst)% of the total decay rate, corresponding to a branching fraction of B D 0 → K ¯ 0 π − S − wave e + ν e $$ B\left[{D}^0\to {\left({\overline{K}}^0{\pi}^{-}\right)}_{S-\textrm{wave}}{e}^{+}{\nu}_e\right] $$ = (0.085 ± 0.005stat ± 0.003syst)%.
format Article
id doaj-art-834add2afb9442f39b452bedf3e90f08
institution OA Journals
issn 1029-8479
language English
publishDate 2025-03-01
publisher SpringerOpen
record_format Article
series Journal of High Energy Physics
spelling doaj-art-834add2afb9442f39b452bedf3e90f082025-08-20T02:11:41ZengSpringerOpenJournal of High Energy Physics1029-84792025-03-012025312010.1007/JHEP03(2025)197Study of the semileptonic decay D 0 → K ¯ 0 π − e + ν e $$ {D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e $$The BESIII collaborationM. Ablikim0M. N. Achasov1P. Adlarson2O. Afedulidis3X. C. Ai4R. Aliberti5A. Amoroso6Y. Bai7O. Bakina8I. Balossino9Y. Ban10H.-R. Bao11V. Batozskaya12K. Begzsuren13N. Berger14M. Berlowski15M. Bertani16D. Bettoni17F. Bianchi18E. Bianco19A. Bortone20I. Boyko21R. A. Briere22A. Brueggemann23H. Cai24X. Cai25A. Calcaterra26G. F. Cao27N. Cao28S. A. Cetin29X. Y. Chai30J. F. Chang31G. R. Che32Y. Z. Che33G. Chelkov34C. Chen35C. H. Chen36Chao Chen37G. Chen38H. S. Chen39H. Y. Chen40M. L. Chen41S. J. Chen42S. L. Chen43S. M. Chen44T. Chen45X. R. Chen46X. T. Chen47Y. B. Chen48Y. Q. Chen49Z. J. Chen50S. K. Choi51G. Cibinetto52F. Cossio53J. J. Cui54H. L. Dai55J. P. Dai56A. Dbeyssi57R. E. de Boer58D. Dedovich59C. Q. Deng60Z. Y. Deng61A. Denig62I. Denysenko63M. Destefanis64F. De Mori65B. Ding66X. X. Ding67Y. Ding68Y. Ding69J. Dong70L. Y. Dong71M. Y. Dong72X. Dong73M. C. Du74S. X. Du75Y. Y. Duan76Z. H. Duan77P. Egorov78G. F. Fan79J. J. Fan80Y. H. Fan81J. Fang82J. Fang83S. S. Fang84W. X. Fang85Y. Fang86Y. Q. Fang87R. Farinelli88L. Fava89F. Feldbauer90G. Felici91C. Q. Feng92J. H. Feng93Y. T. Feng94M. Fritsch95C. D. Fu96J. L. Fu97Y. W. Fu98H. Gao99X. B. Gao100Y. N. Gao101Y. N. Gao102Yang Gao103S. Garbolino104I. Garzia105P. T. Ge106Z. W. Ge107C. Geng108E. M. Gersabeck109A. Gilman110K. Goetzen111L. Gong112W. X. Gong113W. Gradl114S. Gramigna115M. Greco116M. H. Gu117Y. T. Gu118C. Y. Guan119A. Q. Guo120L. B. Guo121M. J. Guo122R. P. Guo123Y. P. Guo124A. Guskov125J. Gutierrez126K. L. Han127T. T. Han128F. Hanisch129X. Q. Hao130F. A. Harris131K. K. He132K. L. He133F. H. Heinsius134C. H. Heinz135Y. K. Heng136C. Herold137T. Holtmann138P. C. Hong139G. Y. Hou140X. T. Hou141Y. R. Hou142Z. L. Hou143B. Y. Hu144H. M. Hu145J. F. Hu146Q. P. Hu147S. L. Hu148T. Hu149Y. Hu150G. S. Huang151K. X. Huang152L. Q. Huang153P. Huang154X. T. Huang155Y. P. Huang156Y. S. Huang157T. Hussain158F. Hölzken159N. Hüsken160N. in der Wiesche161J. Jackson162S. Janchiv163Q. Ji164Q. P. Ji165W. Ji166X. B. Ji167X. L. Ji168Y. Y. Ji169X. Q. Jia170Z. K. Jia171D. Jiang172H. B. Jiang173P. C. Jiang174S. S. Jiang175T. J. Jiang176X. S. Jiang177Y. Jiang178J. B. Jiao179J. K. Jiao180Z. Jiao181S. Jin182Y. Jin183M. Q. Jing184X. M. Jing185T. Johansson186S. Kabana187N. Kalantar-Nayestanaki188X. L. Kang189X. S. Kang190M. Kavatsyuk191B. C. Ke192V. Khachatryan193A. Khoukaz194R. Kiuchi195O. B. Kolcu196B. Kopf197M. Kuessner198X. Kui199N. Kumar200A. Kupsc201W. Kühn202W. N. Lan203T. T. Lei204Z. H. Lei205M. Lellmann206T. Lenz207C. Li208C. Li209C. H. Li210Cheng Li211D. M. Li212F. Li213G. Li214H. B. Li215H. J. Li216H. N. Li217Hui Li218J. R. Li219J. S. Li220K. Li221K. L. Li222L. J. Li223L. K. Li224Lei Li225M. H. Li226P. L. 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Zu673Institute of High Energy PhysicsBudker Institute of Nuclear Physics SB RAS (BINP)Uppsala UniversityBochum Ruhr-UniversityZhengzhou UniversityJohannes Gutenberg University of MainzUniversity of TurinSoutheast UniversityJoint Institute for Nuclear ResearchINFN Sezione di FerraraPeking UniversityUniversity of Chinese Academy of SciencesInstitute of High Energy PhysicsInstitute of Physics and TechnologyJohannes Gutenberg University of MainzNational Centre for Nuclear ResearchINFN Laboratori Nazionali di FrascatiINFN Sezione di FerraraUniversity of TurinUniversity of TurinUniversity of TurinJoint Institute for Nuclear ResearchCarnegie Mellon UniversityUniversity of MuensterWuhan UniversityInstitute of High Energy PhysicsINFN Laboratori Nazionali di FrascatiInstitute of High Energy PhysicsInstitute of High Energy PhysicsTurkish Accelerator Center Particle Factory Group, Istinye UniversityPeking UniversityInstitute of High Energy PhysicsNankai UniversityInstitute of High Energy 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Physikalisches InstitutHenan Normal UniversityUniversity of Science and Technology of ChinaUniversity of Science and Technology of ChinaJohannes Gutenberg University of MainzJohannes Gutenberg University of MainzNankai UniversityQufu Normal UniversityLiaoning Normal UniversityUniversity of Science and Technology of ChinaZhengzhou UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsHenan Normal UniversitySouth China Normal UniversityNankai UniversityTsinghua UniversitySun Yat-Sen UniversityInstitute of High Energy PhysicsHenan Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsRenmin University of ChinaNankai UniversityUniversity of Chinese Academy of SciencesLanzhou UniversityInstitute of High Energy PhysicsShandong UniversityHebei UniversityShandong UniversityNankai UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaShandong UniversityInstitute of High Energy PhysicsSun Yat-Sen UniversityHenan Normal UniversityPeking UniversitySun Yat-Sen UniversityYunnan UniversityNanjing UniversityInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaSichuan UniversityInstitute of Modern PhysicsGuangxi Normal UniversityInstitute of High Energy PhysicsIndian Institute of Technology MadrasSuranaree University of TechnologySoochow UniversityUniversity of Chinese Academy of SciencesInstitute of Modern PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsWuhan UniversityJilin UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsShanxi UniversityCentral China Normal UniversitySouth China Normal UniversityLanzhou UniversityGuangxi UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsHenan University of Science and TechnologyUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsLanzhou 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of High Energy PhysicsInstitute of High Energy PhysicsJilin UniversityShandong UniversityUniversity of Chinese Academy of SciencesFudan UniversityLanzhou UniversityFudan UniversityNankai UniversityUniversity of South ChinaSun Yat-Sen UniversityHelmholtz Institute MainzPeking UniversityLanzhou UniversityLiaoning Normal UniversityFudan UniversityInstitute of High Energy PhysicsTsinghua UniversityNorth China Electric Power UniversityInstitute of High Energy PhysicsLanzhou UniversityHenan Normal UniversityNorth China Electric Power UniversityInstitute of High Energy PhysicsHebei UniversityTsinghua UniversityInstitute of High Energy PhysicsUniversity of South ChinaInstitute of High Energy PhysicsGuangxi Normal UniversityUniversity of MuensterInstitute of High Energy PhysicsLiaoning Normal UniversityBochum Ruhr-UniversityUniversity of OxfordUppsala UniversityBochum Ruhr-UniversityLiaoning Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsHenan Normal UniversityFudan UniversityJilin UniversitySoochow UniversityInstitute of Modern PhysicsInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaLiaoning Normal UniversityInstitute of High Energy PhysicsPeking UniversityLanzhou UniversityNanjing UniversityUniversity of South ChinaInstitute of High Energy PhysicsFudan UniversityNanjing Normal UniversityNanjing UniversityPeking UniversityShandong UniversityInstitute of High Energy PhysicsCentral China Normal UniversityUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsInstitute of High Energy PhysicsSun Yat-Sen UniversityInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaHangzhou Normal UniversityInner Mongolia UniversityUniversity of JinanSoochow UniversityLiaoning UniversityYantai UniversityUniversity of Chinese Academy of SciencesFudan UniversityFudan UniversityUniversity of Science and Technology of ChinaZhengzhou UniversityHenan Normal UniversityInstitute of High Energy PhysicsShanghai Jiao Tong UniversityJilin UniversityInstitute of High Energy PhysicsNanjing UniversityHenan Normal UniversityInstitute of High Energy PhysicsFudan UniversityNankai UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsHenan Normal UniversityLanzhou UniversityShandong UniversityInstitute of High Energy PhysicsChina Center of Advanced Science and TechnologyInstitute of High Energy PhysicsNankai UniversitySun Yat-Sen UniversityInstitute of High Energy PhysicsNankai UniversityInstitute of High Energy PhysicsHunan UniversityLiaoning UniversityUniversity of South ChinaPeking UniversityInstitute of High Energy PhysicsJilin UniversityNorth China Electric Power UniversityBeihang UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsSun Yat-Sen UniversityLiaoning Normal UniversityHenan Normal UniversityUniversity of the PunjabShandong UniversityUniversity of Bristol, H H Wills Physics LaboratoryFudan UniversityHunan UniversitySun Yat-Sen UniversityInstitute of High Energy PhysicsJilin UniversityShandong UniversitySun Yat-Sen UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsNankai UniversityHenan Normal UniversityZhengzhou UniversityUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsSun Yat-Sen UniversityInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsSun Yat-Sen UniversityZhengzhou UniversityShanxi Normal UniversityHenan UniversityNanjing Normal UniversityFudan UniversityInstitute of High Energy PhysicsLanzhou UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Chinese Academy of SciencesTsinghua UniversityNanjing UniversityInstitute of High Energy PhysicsHenan Normal UniversityJilin UniversityLanzhou UniversityInstitute of High Energy PhysicsHunan UniversityInstitute of High Energy PhysicsLiaoning UniversityShandong UniversityUniversity of South ChinaInstitute of High Energy PhysicsZhengzhou UniversityInstitute of High Energy PhysicsLiaoning Normal UniversityUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsInstitute of High Energy PhysicsJilin UniversityHenan Normal UniversityNankai UniversityWuhan UniversityNorth China Electric Power UniversityHenan Normal UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaNankai UniversityYunnan UniversityUniversity of Chinese Academy of SciencesZhengzhou UniversityInstitute of High Energy PhysicsInstitute of Modern PhysicsUniversity of Science and Technology of ChinaJoint Institute for Nuclear ResearchUniversity of South ChinaJilin UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsHenan Normal UniversityUniversity of Chinese Academy of SciencesNanjing Normal UniversitySun Yat-Sen UniversityHelmholtz Institute MainzJilin UniversityInstitute of High Energy PhysicsCentral China Normal UniversityWuhan UniversityCentral China Normal UniversityUniversity of Science and Technology of ChinaLiaoning Normal UniversityFudan UniversityHenan UniversityUniversity of Chinese Academy of SciencesNankai UniversityInstitute of High Energy PhysicsInstitute of High Energy PhysicsFudan UniversityJilin UniversityUniversity of Chinese Academy of SciencesUniversity of Science and Technology LiaoningFudan UniversityNanjing Normal UniversityHenan Normal UniversityUniversity of Science and Technology of ChinaInstitute of High Energy PhysicsInstitute of High Energy PhysicsUniversity of Science and Technology of ChinaAbstract We report an improved study of the semileptonic decay D 0 → K ¯ 0 π − e + ν e $$ {D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e $$ based on a sample of 7.9 fb −1 of e + e − annihilation data collected at a center-of-mass energy of 3.773 GeV with the BESIII detector at the BEPCII collider. The branching fraction of this decay is measured to be B D 0 → K ¯ 0 π − e + ν e $$ \mathcal{B}\left({D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e\right) $$ = (1.444 ± 0.022stat ± 0.024syst)%, which is the most precise to date, where the first uncertainty is statistical and the second is systematic. Based on investigation of the decay dynamics, we find that the decay is dominated by the K *(892) − component and present an improved measurement of its branching fraction to be B D 0 → K ∗ 892 − e + ν e $$ \mathcal{B}\left({D}^0\to {K}^{\ast }{(892)}^{-}{e}^{+}{\nu}_e\right) $$ = (2.039 ± 0.032stat ± 0.034syst)%. We also determine the ratios of the hadronic form factors for the K *(892) − e + ν e decay to be r V = V(0)/A 1(0) = 1.48 ± 0.05stat ± 0.02syst and r 2 = A 2(0)/A 1(0) = 0.70 ± 0.04stat ± 0.02syst, where V(0) is the vector form factor and A 1,2(0) are the axial form factors. In addition, the K ¯ 0 π − $$ {\overline{K}}^0{\pi}^{-} $$ S $$ \mathcal{S} $$ -wave component is found to account for (5.87 ± 0.32stat ± 0.16syst)% of the total decay rate, corresponding to a branching fraction of B D 0 → K ¯ 0 π − S − wave e + ν e $$ B\left[{D}^0\to {\left({\overline{K}}^0{\pi}^{-}\right)}_{S-\textrm{wave}}{e}^{+}{\nu}_e\right] $$ = (0.085 ± 0.005stat ± 0.003syst)%.https://doi.org/10.1007/JHEP03(2025)197Charm Physicse +-e − Experiments
spellingShingle The BESIII collaboration
M. Ablikim
M. N. Achasov
P. Adlarson
O. Afedulidis
X. C. Ai
R. Aliberti
A. Amoroso
Y. Bai
O. Bakina
I. Balossino
Y. Ban
H.-R. Bao
V. Batozskaya
K. Begzsuren
N. Berger
M. Berlowski
M. Bertani
D. Bettoni
F. Bianchi
E. Bianco
A. Bortone
I. Boyko
R. A. Briere
A. Brueggemann
H. Cai
X. Cai
A. Calcaterra
G. F. Cao
N. Cao
S. A. Cetin
X. Y. Chai
J. F. Chang
G. R. Che
Y. Z. Che
G. Chelkov
C. Chen
C. H. Chen
Chao Chen
G. Chen
H. S. Chen
H. Y. Chen
M. L. Chen
S. J. Chen
S. L. Chen
S. M. Chen
T. Chen
X. R. Chen
X. T. Chen
Y. B. Chen
Y. Q. Chen
Z. J. Chen
S. K. Choi
G. Cibinetto
F. Cossio
J. J. Cui
H. L. Dai
J. P. Dai
A. Dbeyssi
R. E. de Boer
D. Dedovich
C. Q. Deng
Z. Y. Deng
A. Denig
I. Denysenko
M. Destefanis
F. De Mori
B. Ding
X. X. Ding
Y. Ding
Y. Ding
J. Dong
L. Y. Dong
M. Y. Dong
X. Dong
M. C. Du
S. X. Du
Y. Y. Duan
Z. H. Duan
P. Egorov
G. F. Fan
J. J. Fan
Y. H. Fan
J. Fang
J. Fang
S. S. Fang
W. X. Fang
Y. Fang
Y. Q. Fang
R. Farinelli
L. Fava
F. Feldbauer
G. Felici
C. Q. Feng
J. H. Feng
Y. T. Feng
M. Fritsch
C. D. Fu
J. L. Fu
Y. W. Fu
H. Gao
X. B. Gao
Y. N. Gao
Y. N. Gao
Yang Gao
S. Garbolino
I. Garzia
P. T. Ge
Z. W. Ge
C. Geng
E. M. Gersabeck
A. Gilman
K. Goetzen
L. Gong
W. X. Gong
W. Gradl
S. Gramigna
M. Greco
M. H. Gu
Y. T. Gu
C. Y. Guan
A. Q. Guo
L. B. Guo
M. J. Guo
R. P. Guo
Y. P. Guo
A. Guskov
J. Gutierrez
K. L. Han
T. T. Han
F. Hanisch
X. Q. Hao
F. A. Harris
K. K. He
K. L. He
F. H. Heinsius
C. H. Heinz
Y. K. Heng
C. Herold
T. Holtmann
P. C. Hong
G. Y. Hou
X. T. Hou
Y. R. Hou
Z. L. Hou
B. Y. Hu
H. M. Hu
J. F. Hu
Q. P. Hu
S. L. Hu
T. Hu
Y. Hu
G. S. Huang
K. X. Huang
L. Q. Huang
P. Huang
X. T. Huang
Y. P. Huang
Y. S. Huang
T. Hussain
F. Hölzken
N. Hüsken
N. in der Wiesche
J. Jackson
S. Janchiv
Q. Ji
Q. P. Ji
W. Ji
X. B. Ji
X. L. Ji
Y. Y. Ji
X. Q. Jia
Z. K. Jia
D. Jiang
H. B. Jiang
P. C. Jiang
S. S. Jiang
T. J. Jiang
X. S. Jiang
Y. Jiang
J. B. Jiao
J. K. Jiao
Z. Jiao
S. Jin
Y. Jin
M. Q. Jing
X. M. Jing
T. Johansson
S. Kabana
N. Kalantar-Nayestanaki
X. L. Kang
X. S. Kang
M. Kavatsyuk
B. C. Ke
V. Khachatryan
A. Khoukaz
R. Kiuchi
O. B. Kolcu
B. Kopf
M. Kuessner
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Study of the semileptonic decay D 0 → K ¯ 0 π − e + ν e $$ {D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e $$
Journal of High Energy Physics
Charm Physics
e +-e − Experiments
title Study of the semileptonic decay D 0 → K ¯ 0 π − e + ν e $$ {D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e $$
title_full Study of the semileptonic decay D 0 → K ¯ 0 π − e + ν e $$ {D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e $$
title_fullStr Study of the semileptonic decay D 0 → K ¯ 0 π − e + ν e $$ {D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e $$
title_full_unstemmed Study of the semileptonic decay D 0 → K ¯ 0 π − e + ν e $$ {D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e $$
title_short Study of the semileptonic decay D 0 → K ¯ 0 π − e + ν e $$ {D}^0\to {\overline{K}}^0{\pi}^{-}{e}^{+}{\nu}_e $$
title_sort study of the semileptonic decay d 0 k ¯ 0 π e ν e d 0 to overline k 0 pi e nu e
topic Charm Physics
e +-e − Experiments
url https://doi.org/10.1007/JHEP03(2025)197
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AT jkjiao studyofthesemileptonicdecayd0k0pened0tooverlinek0pienue
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AT nkalantarnayestanaki studyofthesemileptonicdecayd0k0pened0tooverlinek0pienue
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AT xskang studyofthesemileptonicdecayd0k0pened0tooverlinek0pienue
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AT yliu studyofthesemileptonicdecayd0k0pened0tooverlinek0pienue
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AT wbqian studyofthesemileptonicdecayd0k0pened0tooverlinek0pienue
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