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Operational approach to open dynamics and quantifying initial correlations

机译:开放式动力学和量化初始相关性的操作方法

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摘要

A central aim of physics is to describe the dynamics of physical systems. Schrödinger's equation does this for isolated quantum systems. Describing the time evolution of a quantum system that interacts with its environment, in its most general form, has proved to be difficult because the dynamics is dependent on the state of the environment and the correlations with it. For discrete processes, such as quantum gates or chemical reactions, quantum process tomography provides the complete description of the dynamics, provided that the initial states of the system and the environment are independent of each other. However, many physical systems are correlated with the environment at the beginning of the experiment. Here, we give a prescription of quantum process tomography that yields the complete description of the dynamics of the system even when the initial correlations are present. Surprisingly, our method also gives quantitative expressions for the initial correlation.
机译:物理学的中心目标是描述物理系统的动力学。薛定er方程可用于孤立的量子系统。以最一般的形式描述与环境相互作用的量子系统的时间演化已证明是困难的,因为动力学取决于环境的状态及其相关性。对于离散过程,例如量子门或化学反应,只要系统和环境的初始状态彼此独立,量子过程层析成像技术即可提供动力学的完整描述。但是,在实验开始时,许多物理系统与环境相关。在这里,我们给出了量子过程层析成像的处方,即使存在初始相关性,该处方也能完整描述系统动力学。令人惊讶的是,我们的方法还为初始相关性给出了定量表达式。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Kavan Modi;

  • 作者单位
  • 年(卷),期 -1(2),-1
  • 年度 -1
  • 页码 581
  • 总页数 5
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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