Topologically protected entanglement switching around exceptional points.
Quantum Physics
0303 health sciences
03 medical and health sciences
FOS: Physical sciences
Applied optics. Photonics
QC350-467
Optics. Light
Quantum Physics (quant-ph)
Article
TA1501-1820
Physics - Optics
Optics (physics.optics)
DOI:
10.48550/arxiv.2310.14731
Publication Date:
2024-07-16
AUTHORS (4)
ABSTRACT
AbstractThe robust operation of quantum entanglement states is crucial for applications in quantum information, computing, and communications1–3. However, it has always been a great challenge to complete such a task because of decoherence and disorder. Here, we propose theoretically and demonstrate experimentally an effective scheme to realize robust operation of quantum entanglement states by designing quadruple degeneracy exceptional points. By encircling the exceptional points on two overlapping Riemann energy surfaces, we have realized a chiral switch for entangled states with high fidelity. Owing to the topological protection conferred by the Riemann surface structure, this switching of chirality exhibits strong robustness against perturbations in the encircling path. Furthermore, we have experimentally validated such a scheme on a quantum walk platform. Our work opens up a new way for the application of non-Hermitian physics in the field of quantum information.
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