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Dynamical quantum phase transition in mesoscopic superconducting system

ORAL

Abstract

We investigate the dynamics of correlated quantum dot sandwiched between the metallic and superconducting electrodes. In particular, we consider two quench protocols feasible experimentally. The first quench is performed in the coupling between the dot and the superconductor, while the other one abruptly shifts the energy of the orbital level. The time-dependent charge occupancy, on-dot pair correlations and transient currents reveal non-trivial interplay between the proximity induced electron pairing with correlations caused by the on-dot Coulomb repulsion.

Furthermore, we examine the singlet-doublet dynamical phase transition upon quantum quench traversing the phase boundaries in parameter space between two distinct ground states. We evaluate Loschmidt echo and find non-analytic features in the associated return rate. The cusps arise periodically at critical times and coincide with the local extrema in the pairing correlation function manifesting occurrence of dynamical phase transition.

Publication: K. Wrzesniewski, B. Baran, R. Taranko, T. Domanski, I. Weymann Quench dynamics of a correlated quantum dot sandwiched between normal-metal and superconducting leads Phys. Rev. B 103, 155420 (2021).<br>K. Wrzesniewski, I. Weymann, N. Sedlmayr, T. Domanski Dynamical quantum phase transitions in a mesoscopic superconducting system Phys. Rev. B 105, 094514 (2022).

Presenters

  • Kacper Wrzesniewski

    Adam Mickiewicz University

Authors

  • Kacper Wrzesniewski

    Adam Mickiewicz University

  • Ireneusz Weymann

    Adam Mickiewicz University, Institute of Spintronics and Quantum Information, Faculty of Physics, Adam Mickiewicz University, Poznan, Poland

  • Nicholas Sedlmayr

    Institute of Physics, Maria Curie-Sklodowska University, 20-031 Lublin, Poland

  • Tadeusz Doma?ski

    Institute of Physics, Maria Curie-Sklodowska University, 20-031 Lublin, Poland