论文标题

使用有限端分辨率方案中的光子检测器分析光量子态制备

Analysis of optical quantum state preparation using photon detectors in the finite-temporal-resolution regime

论文作者

Sonoyama, Tatsuki, Asavanant, Warit, Fukui, Kosuke, Endo, Mamoru, Yoshikawa, Jun-ichi, Furusawa, Akira

论文摘要

量子状态准备对于量子信息处理很重要。特别是,在具有连续变量的光学量子计算中,需要非高斯状态进行通用操作和误差校正。光学非高斯状态通常是通过使用光子探测器的先驱方案产生的。在先前的实验中,相对于量子状态的时间宽度,光子检测器的时间分辨率足够高,因此非高斯状态制剂的常规理论将检测器的时间分辨率视为可忽略的。但是,当使用包括光子数分辨率探测器在内的各种光子检测器时,时间分辨率是不可忽略的。在本文中,我们将使用光子检测器的量子状态制备的常规理论扩展到有限的时间分辨率制度,分析单光子和两光子制剂的案例作为示例,并发现生成的状态由无量纲参数$ b $的特征在于$ $ $ $δT和$δT的量子分辨率$ b $定义为$δT和$δT的乘积。根据结果​​,需要$ b \ sim0.1 $来保持生成量子状态高的纯度和保真度。

Quantum state preparation is important for quantum information processing. In particular, in optical quantum computing with continuous variables, non-Gaussian states are needed for universal operation and error correction. Optical non-Gaussian states are usually generated by heralding schemes using photon detectors. In previous experiments, the temporal resolution of the photon detectors was sufficiently high relative to the time width of the quantum state, so that the conventional theory of non-Gaussian state preparation treated the detector's temporal resolution as negligible. However, when using various photon detectors including photon-number-resolving detectors, the temporal resolution is non-negligible. In this paper, we extend the conventional theory of quantum state preparation using photon detectors to the finite temporal resolution regime, analyze the cases of single-photon and two-photon preparation as examples, and find that the generated states are characterized by the dimensionless parameter $B$, defined as the product of the temporal resolution of the detectors $Δt$ and the bandwidth of the light source $Δf$. Based on the results, $B\sim0.1$ is required to keep the purity and fidelity of the generated quantum states high.

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