论文标题

高效的高保真飞行量子

Efficient High-Fidelity Flying Qubit Shaping

论文作者

Tissot, Benedikt, Burkard, Guido

论文摘要

传播光子量子置换量转换的物质Qubit是众多量子技术的基石,例如分布式量子计算,以及几种量子互联网和网络协议。我们为刺激的拉曼发射制定理论,该理论适用于广泛的物理系统,包括量子点,固态缺陷和捕获的离子以及各种参数制度。我们发现,对于不完美的发射器的任意物质量子态的光子脉冲发射效率的上限,并显示出优化忠诚度的前进方向。基于这些结果,我们提出了从优化驱动器到使用封闭形式表达式直接优化飞行量子的时间模式的范式转移。提出了用于生产时间络编码和自旋光子纠缠的方案。此外,使用投入输出理论将脉冲吸收主要的发射过程中的数学思想,然后使用非赫米特式Schrödinger方程方法,具有研究其他物理系统的巨大潜力。

Matter qubit to traveling photonic qubit conversion is the cornerstone of numerous quantum technologies such as distributed quantum computing, as well as several quantum internet and networking protocols. We formulate a theory for stimulated Raman emission which is applicable to a wide range of physical systems including quantum dots, solid state defects, and trapped ions, as well as various parameter regimes. We find the upper bound for the photonic pulse emission efficiency of arbitrary matter qubit states for imperfect emitters and show a path forward to optimizing the fidelity. Based on these results we propose a paradigm shift from optimizing the drive to directly optimizing the temporal mode of the flying qubit using a closed-form expression. Protocols for the production of time-bin encoding and spin-photon entanglement are proposed. Furthermore, the mathematical idea to use input-output theory for pulses to absorb the dominant emission process into the coherent dynamics, followed by a non-Hermitian Schrödinger equation approach has great potential for studying other physical systems.

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