河北大学学报(自然科学版) ›› 2022, Vol. 42 ›› Issue (5): 468-473.DOI: 10.3969/j.issn.1000-1565.2022.05.004

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构造不变子空间计算光子克隆的保真度

孙晋串   

  • 收稿日期:2021-12-18 出版日期:2022-09-25 发布日期:2022-10-19
  • 作者简介:孙晋串(1994—),男,山西晋城人,武汉大学在读博士研究生,主要从事量子信息方向研究.
    E-mail: jin-chuan.sun@whu.edu.cn
  • 基金资助:
    国家自然科学基金资助项目(11574239)

Compute the fidelity of photon cloning by constructing invariant subspaces

SUN Jinchuan   

  1. School of Physics and Technology, Wuhan University, Wuhan 430072, China
  • Received:2021-12-18 Online:2022-09-25 Published:2022-10-19

摘要: 研究了双模辐射场和几个三能级原子的相互作用,计算了光子克隆的平均保真度随时间的变化,对数值计算过程进行了简化. 在对量子态的演化进行数值计算中,一般是在整个Hilbert空间进行计算.如果系统的空间维度很大,则数值计算需要处理大量的数据,花费大量的计算时间,有时候可以根据系统的特殊物理性质简化数值计算.如果在整个Hilbert空间找到每个量子态所在的不变子空间,对于每个量子态,在时间演化算符的作用下始终在自己的不变子空间内演化.不需要在全空间数值计算量子态的演化,而只需要在初态所在的子空间计算即可. 通过比较分析得知,在数值计算少数三能级原子对光子的克隆时,在全空间计算量子态的演化需要处理的数据量比在各自子空间计算要大1个数量级.

关键词: 量子克隆, 受激辐射, 保真度, 不变子空间

Abstract: The interaction between two-mode radiation field and several three-level atoms is studied. The variation of the average fidelity of photon cloning with time is calculated, and the numerical calculation is simplified. As for the numerical calculation of the evolution of quantum states, it is generally calculated in the whole Hilbert space. If the spatial dimension of the system is large, the numerical calculation needs to process a large amount of data and consumes a lot of calculation time. Sometimes the numerical calculation can be simplified according to the special physical properties of the system. If the invariant subspace of each quantum state is found in the whole Hilbert space, each quantum state will always evolve in its own invariant subspace under the action of the time-evolution operator. It is thus not necessary to numerically calculate the evolution of quantum states in the whole space, but only in the subspace where the initial state is located. Through comparative analysis, it is found that when numerically calculating the cloning of photons by a few three-level atoms, the amount of data to be processed when computing in the whole space is one order of magnitude larger than that in the all subspaces.

Key words: quantum cloning, stimulated emission, cloning fidelity, invariant subspace

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