Showing 1 - 20 results of 26 for search 'Josephson function', query time: 0.08s Refine Results
  1. 1

    Transfer function of an asymmetric superconducting Gauss neuron by Fedor A. Razorenov, Aleksander S. Ionin, Nikita S. Shuravin, Liubov N. Karelina, Mikhail S. Sidel’nikov, Sergey V. Egorov, Vitaly V. Bol’ginov

    Published 2025-07-01
    “…The Gauss neuron is a nonlinear signal converter, whose transfer function (TF) is described by the derivative of some sigmoidal dependence. …”
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    Josephson effect in strongly disordered metallic wires by Mustafa E. Ismagambetov, Aleksey V. Lunkin, Pavel M. Ostrovsky

    Published 2025-07-01
    “…We study localization effects in Josephson junctions with two superconductors connected by a strongly disordered metallic wire of length $L$. …”
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    The feedback driven atomic scale Josephson microscope by Samuel D. Escribano, Víctor Barrena, David Perconte, Jose Antonio Moreno, Marta Fernández Lomana, Miguel Águeda, Edwin Herrera, Beilun Wu, Jose Gabriel Rodrigo, Elsa Prada, Isabel Guillamón, Alfredo Levy Yeyati, Hermann Suderow

    Published 2025-07-01
    “…Abstract The ultimate spatial limit to establish a Josephson coupling between two superconducting electrodes is an atomic-scale junction. …”
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    Sub-barrier transfer reactions and the nuclear Josephson effect by Corradi L.

    Published 2025-01-01
    “…One subtle case is the possible manifestation of a nuclear Josephson effect. Predictions have been made of a specific gamma strength function associated with the dipole oscillations generated by the, mainly successive, two neutron transfer process. …”
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  5. 5

    Josephson Current through a Quantum Dot Connected with Superconducting Leads by Satoshi Kawaguchi

    Published 2019-01-01
    “…In this study, we consider the Josephson current in a system composed of a superconductor/quantum dot/superconductor junction. …”
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    Complex dynamics in Memristive micro/nano beam resonators incorporating Josephson junctions by Cédric Noufozo Talonang, Alain Soup Tewa Kammogne, Ahmad Taher Azar, Hilaire Bertrand Fotsin, Boris Arnaud Notchum Deffo, Saim Ahmed, Walid El-Shafai, Mohamed Tounsi

    Published 2025-06-01
    “…This work focuses on the emergence of chaos in a nonlinear memristive NEMS (Nano Electro-Mechanical System) actuated by two-sided electrodes based on a Josephson junction (JJ). Nanoelectromechanical systems (NEMS) are devices that integrate electrical and mechanical functions at the nanoscale. …”
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    Probing amplified Josephson plasmons in YBa2Cu3O6+x by multidimensional spectroscopy by N. Taherian, M. Först, A. Liu, M. Fechner, D. Pavicevic, A. von Hoegen, E. Rowe, Y. Liu, S. Nakata, B. Keimer, E. Demler, M. H. Michael, A. Cavalleri

    Published 2025-06-01
    “…Abstract The nonlinear driving of collective modes in quantum materials can lead to a number of striking non-equilibrium functional responses, which merit a comprehensive exploration of underlying dynamics. …”
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    Tunable diode effect in a superconducting tunnel junction with biharmonic drive by David Scheer, Rubén Seoane Souto, Fabian Hassler, Jeroen Danon

    Published 2025-01-01
    “…A Josephson diode is a superconducting circuit element that enables non-reciprocal transport, allowing a dissipationless supercurrent to preferentially flow in a single direction. …”
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  12. 12

    Nonequilibrium thermodynamics of a superconducting Szilard engine by Kuen Wai Tang, Kyle J Ray, James P Crutchfield

    Published 2025-01-01
    “…Detailed simulations show that it is highly thermodynamically efficient while functioning as a Maxwell demon—converting heat to work. …”
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    Two superconducting thin films systems with potential integration of different quantum functionalities by Snehal Mandal, Biplab Biswas, Suvankar Purkait, Anupam Roy, Biswarup Satpati, Indranil Das, B N Dev

    Published 2025-01-01
    “…Quantum computation based on superconducting circuits utilizes superconducting qubits with Josephson junctions (JJs). Engineering high-coherence qubits requires materials optimization. …”
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    A Note on the Dynamics of Modified rf-SQUIDs: Simulations and Possible Control over Oscillations by Nikolay Kyurkchiev, Tsvetelin Zaevski, Anton Iliev, Todor Branzov

    Published 2025-02-01
    “…It is based on the Fourier transform and, as a consequence, on the characteristic function of some probability distributions.…”
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    Guideline Directed Anticoagulant Treatment and Dosing in a Contemporary Atrial Fibrillation Cohort: Analysis of the TRANSECT-AF Program by Cole Clifford, MD, Shaun G. Goodman, MD, MSc, Mary K. Tan, MSc, Jean Gregoire, MD, Jeffrey Habert, MD, Anil Gupta, MD, Walter Chow, MD, Shahin Jaffer, MD, MHSc, Sandeep G. Aggarwal, MD, Michael Heffernan, MD, Robert Maranda, MD, Kevin Saunders, MD, Andrew T. Yan, MD, Sandeep Aggarwal, Grant Campbell, Tony Ford, Allan Kelly, Michael Kroetsch, Jean-Pierre Leung, Indra Patel, Qaiser Rizvi, Matthew Wong, Andrew Wong, Jessica Chan, Kenneth Cho, Walter Chow, Daniel Ezekiel, Shahin Jaffer, Al Karmali, Parbhoobhai Lakhoo, Dante Manyari, Tun Zan Maung, Laura Ozolins, Ameet Parikh, Walter Salmaniw, Masoud Shahrokhi, Alex She, Kanwarinder Sidhu, Raymond Simkus, Felix Tam, Richard Van Gend, Jeffrey T. Wang, Jonathan Wiltshire, Felix Yang, David Yoon, Daljit Gill, David Haligowski, Yatish Kotecha, Abraham C. Mare, Pravinsagar Mehta, Sunilkumar Patel, Kevin Saunders, Gilbert Blanchard, Steve Kenney, Oluwasyo Olatunde, Gary Rideout, William Booth, Adam Clarke, Malcolm Lawrence Macneil, Vineeta Ahooja, Lina Alkasm, Edgard Arcia-Bravo, Ogunroti Ayibiowu, Basel Bari, Parvinder Bath, Rani Beharry, Rajendra Beharry, Ira Bernstein, Mukesh Bhargava, Leon Bhatia, Harry Birman, Brent Bukovy, Craig Campagna, Claudius Che, Richard Chen, Michael Cheng, Grace Chua, Kim Connelly, Michael Csanadi, Maynard Luterman, Gregory Curnew, Shyamali Damboragama, Sampa Das, Selwyn De Souza, Nicole Desmarais, Debbie Dyke, Fadia El Boreky, Sameh Fikry, Ken Florence, Omayma Fouda, Melody Fox, Gissou Ghadirian, Magdy Girgis, Steven Grossman, Anil Gupta, Nassoh Hafez, Adnan Hameed, Brian Hartford, Michael Heffernan, Terry Holman, Brendan Hughes, Harry Jim, David Josephson, Amjad Junaid, Bharat Kalra, Nikolay Kaplan, Saleem Kassam, Aubrey Kassirer, Tammy Kauffman-Schenker, Hashmat Khan, Natan Khotianov, Myung-Gi Kim, Kinga Koprowicz, Joseph Kozak, Naresh Kumar, Adel Kyrollos, Andy Lam, David Lam, Howard Lamb, Ming Jarm Lau, Doris Lee, Christina Lo, Giridhar Logsetty, Victoria Malevich, Robert Maranda, Rohit Nagpal, Farah Nasser-Sharif, Ken H. Ng, Parminder Nizran, Luis Noronha, Huma N. Numair, Paul O. Oladipo, Chris Overgaard, Derek Papastergiou, Fred Parker, Keyvan Pazuki, Murray Pearce, Sean Peterson, Mohammed Rahman, Felice Emilio Raimondo, Tim Remillard, Gerald Rockman, Howard Rudner, Roland Sabbagh, Ashraf Salib, Raymond Sawkiw, Earl Schwartz, Shiraz Shariff, Ivan Shcherbatykh, Mike Chungming Shih, Sewa Ram Singal, Sol Stern, Ravi Tahiliani, Manoj Tahiliani, Arawn Therrien, Bill Tillmann, Camelia Trambitas, Andrew Trevor, Jeff Tschirhart, Shera Vania, Elisa Venier, Vinod Verma, George Vertes, David Walley, Hany William, Amy Wong, Kevin Yoong, Derek Yung, Ines Zepic, Dean Zizzo, Harold Molyneaux, Paul Phelan, Martin Albert, Jean Champagne, Jacques Desroches, Danielle Dion, Richard Dumouchel, Carl Fournier, Mario Labbe, Germain Savard, Dan Dattani, Cecil Hammond, Andrea Lavoie, Omar Sultan

    Published 2025-04-01
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    Fermionic quantum simulation on Andreev bound state superlattices by Peter D. Johannsen, Constantin Schrade

    Published 2025-05-01
    “…Here, we propose and study an alternative approach for analog fermionic quantum simulation based on arrays of coherently coupled mesoscopic Josephson junctions. These Josephson junction arrays implement an effective superlattice of Andreev bound state atoms that can trap individual fermionic quasiparticles and, due to their wave-function overlap, mediate quasiparticles hoppings. …”
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