Non-Markovian Exceptional Points by Interpolating Quantum Channels
Wai Chun Wong, Bei Zeng, Jensen Li

TL;DR
This paper introduces a method to generate and analyze exceptional points in open quantum systems using quantum channel interpolation, demonstrated experimentally on an NMR quantum computer, revealing higher-order EPs.
Contribution
It presents a systematic approach to realize and study exceptional points in quantum channels, extending the understanding of EPs beyond traditional non-Hermitian models.
Findings
Successfully implemented second-order EPs in a single-qubit system
Extended the method to observe third-order EPs with three channels
Validated the approach with high-fidelity experimental results
Abstract
Exceptional points (EPs) are special points in non-Hermitian systems where both eigenvalues and eigenvectors coalesce. In open quantum systems, these points are typically analyzed using effective non-Hermitian Hamiltonians or Liouvillian superoperators. While quantum channels offer the most general framework for describing state evolution in such systems, the existence and properties of EPs within this setting remain largely unexplored. In this work, we present a general strategy for generating quantum EPs for a single-qubit setting. We show that quantum channels can be separated into two distinct phases, with the transition between them marked by the presence of an EP. Based on this, we propose a systematic method to realize EPs by interpolating between quantum channels representing different phases. Experimentally, we implement these interpolated channels on a nuclear magnetic…
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Taxonomy
TopicsQuantum Computing Algorithms and Architecture · Quantum Information and Cryptography · Quantum Mechanics and Applications
