Crossing exceptional points in non-Hermitian quantum systems
Crossing exceptional points in non-Hermitian quantum systems
Exceptional points facilitate peculiar dynamics in non-Hermitian systems. Yet, in photonics, they have mainly been studied in the classical realm. In this work, we reveal the behavior of two-photon quantum states in non-Hermitian systems across the exceptional point. We probe the lossy directional coupler with an indistinguishable two-photon input state and observe distinct changes of the quantum correlations at the output as the system undergoes spontaneous breaking of parity-time symmetry. Moreover, we demonstrate a switching in the quantum interference of photons directly at the exceptional point, where Hong-Ou-Mandel dips are transformed into peaks by a change of basis. These results show that quantum interference and exceptional points are linked in curious ways that can now be further explored.
Friederike U. J. Klauck、Tom A. W. Wolterink、Alexander Szameit、Matthias Heinrich
物理学
Friederike U. J. Klauck,Tom A. W. Wolterink,Alexander Szameit,Matthias Heinrich.Crossing exceptional points in non-Hermitian quantum systems[EB/OL].(2024-07-17)[2025-08-02].https://arxiv.org/abs/2407.12578.点此复制
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