量子层析成像
量子态
量子
量子过程
量子网络
量子技术
量子传感器
量子操作
计算机科学
量子算法
量子计算机
统计物理学
物理
开放量子系统
量子力学
量子动力学
作者
Sanjib Ghosh,Andrzej Opala,Michał Matuszewski,Tomasz Paterek,Timothy Chi Hin Liew
标识
DOI:10.1109/tnnls.2020.3009716
摘要
Reconstructing quantum states is an important task for various emerging quantum technologies. The process of reconstructing the density matrix of a quantum state is known as quantum state tomography. Conventionally, tomography of arbitrary quantum states is challenging as the paradigm of efficient protocols has remained in applying specific techniques for different types of quantum states. Here, we introduce a quantum state tomography platform based on the framework of reservoir computing. It forms a quantum neural network and operates as a comprehensive device for reconstructing an arbitrary quantum state (finite-dimensional or continuous variable). This is achieved with only measuring the average occupation numbers in a single physical setup, without the need of any knowledge of optimum measurement basis or correlation measurements.
科研通智能强力驱动
Strongly Powered by AbleSci AI