苏晓龙 1,2,3,*韩冬梅 1,2,3,**王娜 1,2,3王美红 1,2,3
作者单位
摘要
1 山西大学量子光学与光量子器件国家重点实验室,山西 太原 030006
2 山西大学光电研究所,山西 太原 030006
3 极端光学协同创新中心,山西 太原 030006
基于远程分发的量子纠缠,远程态制备能够实现量子态的远程制备和操控,是实现量子态传输的一种重要方式。近年来,远程态制备取得了重要研究进展,相继实现了单量子比特、连续变量量子比特、压缩态、非高斯态和光学猫态的远程制备。本文简要介绍远程态制备的基本原理、离散变量和连续变量远程态制备的研究进展及其发展趋势。
远程态制备 纠缠态 连续变量 离散变量 
激光与光电子学进展
2024, 61(1): 0127001
Author Affiliations
Abstract
1 State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, China
2 School of Mathematics and Physics, Anhui University of Technology, Maanshan 243000, China
3 Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China
4 e-mail: haoshuhong@qq.com
Besides quantum entanglement and steering, quantum coherence has also been identified as a useful quantum resource in quantum information. It is important to investigate the evolution of quantum coherence in practical quantum channels. In this paper, we experimentally quantify the quantum coherence of a squeezed state and a Gaussian Einstein–Podolsky–Rosen (EPR) entangled state transmitted in Gaussian thermal noise channel. By reconstructing the covariance matrix of the transmitted states, quantum coherence of these Gaussian states is quantified by calculating the relative entropy. We show that quantum coherence of the squeezed state and the Gaussian EPR entangled state is robust against loss and noise in a quantum channel, which is different from the properties of squeezing and Gaussian entanglement. Our experimental results pave the way for application of Gaussian quantum coherence in lossy and noisy environments.
Photonics Research
2021, 9(7): 07001330
Author Affiliations
Abstract
1 State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, China
2 Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China
The uncertainty relation is one of the fundamental principles in quantum mechanics and plays an important role in quantum information science. We experimentally test the error-disturbance uncertainty relation (EDR) with continuous variables for Gaussian states. Two incompatible continuous-variable observables, amplitude and phase quadratures of an optical mode, are measured simultaneously using a heterodyne measurement system. The EDR values with continuous variables for coherent, squeezed, and thermal states are verified experimentally. Our experimental results demonstrate that Heisenberg’s EDR with continuous variables is violated, while Ozawa’s and Branciard’s EDRs with continuous variables are validated.
Photonics Research
2019, 7(11): 11000A56
作者单位
摘要
上海宇航系统工程研究所, 上海 201109
瞬时电离辐射在电子器件内部形成的光电流可引起器件输出扰动,导致电路中部分器件受电源、输入信号及自身产生光电流扰动的多重影响,而单独对器件进行试验无法反映γ瞬时辐射输出扰动在电子组件系统中的传递影响。为此对由DC/DC、稳压器、单片机CPU,FPGA等组成的控制器组件在2.8×105~1.7×107 Gy(Si)/s的范围内开展了γ瞬时辐射效应的试验研究。试验中对组件功能和器件参数的测试结果表明,在较小的瞬时剂量率下,部分器件输出受到影响,但组件功能正常; 较大剂量率时,所有器件均受影响,且组件功能中断。同时观测到瞬时辐射形成的扰动信号在器件间传输现象。
电子系统 瞬时辐照效应 γ剂量率 electronic circuits transient radiation effect γ dose rate 
强激光与粒子束
2016, 28(4): 044001

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