Gain on ground state of quantum system for truly $\mathcal{PT}$ symmetry
Bing-Bing Liu, Shi-Lei Su

TL;DR
This paper proposes a novel method to realize effective gain in the ground state of a truly $ ext{PT}$-symmetric quantum system by combining measurement, feedback, and averaging techniques, enabling the construction of $ ext{PT}$-symmetric quantum devices.
Contribution
It introduces a new approach to achieve effective gain in $ ext{PT}$-symmetric systems using continuous measurement and feedback, overcoming previous challenges in realizing the gain term.
Findings
Effective gain on the ground state achieved after averaging trajectories.
Method integrates S{ }orensen-Reiter operator with Wiseman-Milburn master equation.
Potential to develop $ ext{PT}$-symmetric quantum devices for quantum information.
Abstract
For a truly -symmetric quantum system, the conventional non-Hermitian Hamiltonian is , where and are real parameters and denotes Pauli X operator. These three terms represent coherent coupling, loss (on state ), and gain (on state ), respectively. Although the works in [Phys. Rev. Lett. \textbf{101}, 230404 (2008); Phys. Rev. Lett. \textbf{119}, 190401 (2017); Science \textbf{364}, 878 (2019)] proposed theoretically and/or demonstrate dilation methods for a truly parity-time()-symmetric Hamiltonian by embedding into larger Hermitian space, directly realizing the gain term has still remained an outstanding challenge for quantum system. While systems omitting this gain term can exhibit a passively…
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