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Quantum interference between heralded single photon state and coherent state

机译:预告单光子态与相干态之间的量子干涉

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摘要

Balanced homodyne detection has been introduced as a reliable technique of reconstructing the quantum state of a single photon Fock state,which is based on coupling the single photon state and a strong coherent local oscillator in a beam splitter and detecting the field quadrature at the output ports separately.The main challenge associated with a tomographic characterization of the single photon state is mode matching between the single photon state and the local oscillator.Utilizing the heralded single photon generated by the spontaneous parametric process,the multi-mode theoretical model of quantum interference between the single photon state and the coherent state in the fiber beam splitter is established.Moreover,the analytical expressions of the temporal-mode matching coefficient and interference visibility and relationship between the two parameters are shown.In the experimental scheme,the interference visibility under various temporalmode matching coefficients is demonstrated,which is almost accordant with the theoretical value.Our work explores the principle of temporal-mode matching between the single photon state and the coherent photon state,originated from a local oscillator,and could provide guidance for designing the high-performance balanced homodyne detection system.
机译:已引入平衡零差检测作为一种重构单光子Fock状态的量子状态的可靠技术,该技术基于在分束器中耦合单光子状态和强相干本振并检测输出端口处的场正交与单光子状态的层析成像表征相关的主要挑战是单光子状态与本机振荡器之间的模式匹配。利用自发参量过程产生的预示单光子,建立了多模态量子干涉理论模型。建立了光纤分束器中的单光子态和相干态。此外,给出了时模匹配系数和干涉能见度以及两个参数之间的关系的解析表达式。在实验方案中,各种条件下的干涉能见度证明了时间模式匹配系数,w hich几乎与理论值相符。我们的工作探索了单光子状态与相干光子状态之间时间模式匹配的原理,其源于本地振荡器,可为设计高性能平衡零差检测系统提供指导。

著录项

  • 来源
    《中国物理:英文版》 |2017年第7期|111-116|共6页
  • 作者单位

    College of Precision Instrument and Opto-Electronics Engineering, Tianjin University,Key Laboratory of Opto-Electronics Information Technology, Ministry of Education, Tianjin 300072, China;

    High School Affiliated to Beijing Institute of Technology, Beijing 100089, China;

    College of Precision Instrument and Opto-Electronics Engineering, Tianjin University,Key Laboratory of Opto-Electronics Information Technology, Ministry of Education, Tianjin 300072, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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