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24–26 Sept 2025
Tsung-Dao Lee Institute
Asia/Shanghai timezone

Non-Hermitian Fermi-Dirac Distribution and Applications in Quantum Transport

26 Sept 2025, 11:00
30m
Tsung-Dao Lee Institute/N1F-N102 - Smart Classroom (Tsung-Dao Lee Institute)

Tsung-Dao Lee Institute/N1F-N102 - Smart Classroom

Tsung-Dao Lee Institute

70

Speaker

Mr Pei-Xin Shen (Institute of Physics, Polish Academy of Sciences)

Description

In this talk, I will introduce the theory of persistent current transport in non-Hermitian quantum systems, building on the foundation of Hermitian superconducting-normal-superconducting junctions. I will then extend the system to incorporate dissipation using non-Hermitian quantum Hamiltonians. By employing Green’s function formalism, I will show the emergence of a non-Hermitian Fermi-Dirac distribution that allows us to derive an analytical expression for the persistent current that depends solely on the complex spectrum. This formula is applied to two dissipative models: (i) a phase-biased superconducting-normal-superconducting junction, and (ii) a normal mesoscopic ring threaded by a magnetic flux. I will demonstrate that the persistent currents in both systems exhibit no anomalies at emergent exceptional points, whose signatures instead become apparent in the current susceptibility. These results, validated by exact diagonalization, are further extended to include finite temperature and interaction effects. I will conclude by discussing potential applications of this formalism in identifying Majorana zero modes and its relationship with symbolic AI.

Reference:
P.-X. Shen, Z. Lu, J. L. Lado, and M. Trif, Non-Hermitian Fermi-Dirac Distribution in Persistent Current Transport, Phys. Rev. Lett. 133, 086301 (2024) (Editors’ Suggestion).

Session Selection Condensed Matter

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