Quantum and thermal noise in coupled non-Hermitian waveguide systems with different models of gain and loss

Non-Hermitian (NH) photonic systems leverage gain and loss to open new directions for nanophotonic technologies. However, the quantum and thermal noise intrinsically associated with gain/loss affects the eigenvalue/eigenvector structure of NH systems, and thus the existence of exceptional points, as...

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Main Authors: Hernández Osmery, Liberal Iñigo
Format: Article
Language:English
Published: De Gruyter 2025-01-01
Series:Nanophotonics
Subjects:
Online Access:https://doi.org/10.1515/nanoph-2024-0512
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author Hernández Osmery
Liberal Iñigo
author_facet Hernández Osmery
Liberal Iñigo
author_sort Hernández Osmery
collection DOAJ
description Non-Hermitian (NH) photonic systems leverage gain and loss to open new directions for nanophotonic technologies. However, the quantum and thermal noise intrinsically associated with gain/loss affects the eigenvalue/eigenvector structure of NH systems, and thus the existence of exceptional points, as well as the practical noise performance of these systems. Here, we present a comparative analysis of the impact of different gain and loss mechanisms on the noise generated in gain–loss compensated NH waveguide systems. Our results highlight important differences in the eigenvalue/eigenvector structure, noise power, photon statistics and squeezing. At the same time, we identify some universal properties such as the occurrence of phase-transition points in parameter space and intriguing phenomena related to them, including coalescence of pairs of eigenvectors, gain–loss compensation, and linear scaling of the noise with the length of the waveguide. We believe that these results contribute to a better understanding of the impact of the gain/loss mechanism on the noise generated in NH systems.
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institution Kabale University
issn 2192-8614
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series Nanophotonics
spelling doaj-art-89994a0f88fd467ba1880bd63bfe20af2025-02-02T15:46:12ZengDe GruyterNanophotonics2192-86142025-01-01141819410.1515/nanoph-2024-0512Quantum and thermal noise in coupled non-Hermitian waveguide systems with different models of gain and lossHernández Osmery0Liberal Iñigo1Department of Electrical, Electronic and Communications Engineering, Public University of Navarre, 31006Pamplona, SpainDepartment of Electrical, Electronic and Communications Engineering, Public University of Navarre, 31006Pamplona, SpainNon-Hermitian (NH) photonic systems leverage gain and loss to open new directions for nanophotonic technologies. However, the quantum and thermal noise intrinsically associated with gain/loss affects the eigenvalue/eigenvector structure of NH systems, and thus the existence of exceptional points, as well as the practical noise performance of these systems. Here, we present a comparative analysis of the impact of different gain and loss mechanisms on the noise generated in gain–loss compensated NH waveguide systems. Our results highlight important differences in the eigenvalue/eigenvector structure, noise power, photon statistics and squeezing. At the same time, we identify some universal properties such as the occurrence of phase-transition points in parameter space and intriguing phenomena related to them, including coalescence of pairs of eigenvectors, gain–loss compensation, and linear scaling of the noise with the length of the waveguide. We believe that these results contribute to a better understanding of the impact of the gain/loss mechanism on the noise generated in NH systems.https://doi.org/10.1515/nanoph-2024-0512gain-loss compensationnon-hermitian photonicsexceptional pointsquantum noisethermal noisesqueezing
spellingShingle Hernández Osmery
Liberal Iñigo
Quantum and thermal noise in coupled non-Hermitian waveguide systems with different models of gain and loss
Nanophotonics
gain-loss compensation
non-hermitian photonics
exceptional points
quantum noise
thermal noise
squeezing
title Quantum and thermal noise in coupled non-Hermitian waveguide systems with different models of gain and loss
title_full Quantum and thermal noise in coupled non-Hermitian waveguide systems with different models of gain and loss
title_fullStr Quantum and thermal noise in coupled non-Hermitian waveguide systems with different models of gain and loss
title_full_unstemmed Quantum and thermal noise in coupled non-Hermitian waveguide systems with different models of gain and loss
title_short Quantum and thermal noise in coupled non-Hermitian waveguide systems with different models of gain and loss
title_sort quantum and thermal noise in coupled non hermitian waveguide systems with different models of gain and loss
topic gain-loss compensation
non-hermitian photonics
exceptional points
quantum noise
thermal noise
squeezing
url https://doi.org/10.1515/nanoph-2024-0512
work_keys_str_mv AT hernandezosmery quantumandthermalnoiseincouplednonhermitianwaveguidesystemswithdifferentmodelsofgainandloss
AT liberalinigo quantumandthermalnoiseincouplednonhermitianwaveguidesystemswithdifferentmodelsofgainandloss