利用环境相互作用模型实现开放量子系统的退相干抑制

N. Ganesan, T. Tarn
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摘要

本文通过有效地利用开放量子系统的几何和结构特性以及环境相互作用模型,研究了开放有限维量子系统中的退相干抑制问题。研究表明,系统的几何特性和退相干环境相互作用的结构对退相干抑制的成功起着至关重要的作用。我们将退相干抑制问题重新表述为一种干扰抑制方案,其中环境相互作用被视为量子干扰。给出了“解耦性”的条件,并给出了在可扩展辅助量子系统的帮助下综合解耦控制的详细构造算法。这种退相干抑制策略在一个简单的2量子位系统中被证明,其中退相干的影响被完全消除。该理论为控制器提供了保证完全解耦的条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Achieving decoherence suppression in open quantum systems by utilizing the model of environmental interactions
In this paper, we study the problem of suppressing Decoherence in open finite-dimensional quantum systems by effectively making use of the geometric and structural properties of the open quantum system and the model of the environmental interaction. It is shown that both the geometric properties of the system as well as the structure of decohering environmental interaction play a vital role in successful decoherence suppression. We re-formulate the problem of decoherence suppression as a disturbance rejection scheme, in which the environmental interaction is treated as the quantum disturbance. The conditions for “decouplability” is given along with a detailed constructive algorithm to synthesize the decoupling control of with the help of a scalable ancillary quantum system. This decoherence suppression strategy is demonstrated for a simple 2-qubit system wherein the effects of decoherence are completely eliminated. The theory provides conditions to be imposed on the controller to ensure perfect decoupling.
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