Imaginarity Resource Theory of Gaussian Quantum Channels

Fuente: arXiv
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Main Authors: Zhang, Ting, Hou, Jinchuan, Qi, Xiaofei
Format: Preprint
Published: 2026
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author Zhang, Ting
Hou, Jinchuan
Qi, Xiaofei
author_facet Zhang, Ting
Hou, Jinchuan
Qi, Xiaofei
contents Complex numbers play an indispensable role in quantum mechanics and quantum information, as validated by both theoretical analysis and experimental verification. Since quantum information processing inherently relies on quantum channels, the resource theory for quantum channels is equally fundamental to that for quantum states. In this paper, we propose two frameworks for quantifying the imaginarity of Gaussian channels. The first framework regards all real superchannels as free superchannels. Within this setting, we introduce two concrete imaginarity measures for Gaussian channels: I_s^GC based on existing imaginarity measures of Gaussian states, and I_d^GC derived directly from the intrinsic parameters of Gaussian channels, which enjoys high computational simplicity. The second framework adopts only a proper subset of real superchannels as free superchannels. Under this framework, we put forward another imaginarity measure I_c^GC , which is fully determined by the inherent parameters of Gaussian channels and features continuity as well as tractable computation. As a practical application, we employ I_c^GC to investigate the dynamical behavior of Quantum Brownian Motion Gaussian channels throughout the entire evolutionary process.
format Preprint
id arxiv_https___arxiv_org_abs_2605_14299
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Imaginarity Resource Theory of Gaussian Quantum Channels
Zhang, Ting
Hou, Jinchuan
Qi, Xiaofei
Quantum Physics
Complex numbers play an indispensable role in quantum mechanics and quantum information, as validated by both theoretical analysis and experimental verification. Since quantum information processing inherently relies on quantum channels, the resource theory for quantum channels is equally fundamental to that for quantum states. In this paper, we propose two frameworks for quantifying the imaginarity of Gaussian channels. The first framework regards all real superchannels as free superchannels. Within this setting, we introduce two concrete imaginarity measures for Gaussian channels: I_s^GC based on existing imaginarity measures of Gaussian states, and I_d^GC derived directly from the intrinsic parameters of Gaussian channels, which enjoys high computational simplicity. The second framework adopts only a proper subset of real superchannels as free superchannels. Under this framework, we put forward another imaginarity measure I_c^GC , which is fully determined by the inherent parameters of Gaussian channels and features continuity as well as tractable computation. As a practical application, we employ I_c^GC to investigate the dynamical behavior of Quantum Brownian Motion Gaussian channels throughout the entire evolutionary process.
title Imaginarity Resource Theory of Gaussian Quantum Channels
topic Quantum Physics
url https://arxiv.org/abs/2605.14299