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20172020
most citedImplementation of Multiparty quantum clock synchronization

2 citations · 3 across the 3 of their papers we have counts for

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quant-ph20201 cited

Quantum Pure State Tomography via Variational Hybrid Quantum-Classical Method

Tao Xin, Xinfang Nie, Xiangyu Kong +3

To obtain a complete description of a quantum system, one usually employs standard quantum state tomography, which however requires exponential number of measurements to perform an…

quant-ph2018

Experimental Simulation of Bosonic Creation and Annihilation Operators in a Quantum Processor

Xiangyu Kong, Shijie Wei, Jingwei Wen +1

The ability of implementing quantum operations plays fundamental role in manipulating quantum systems. Creation and annihilation operators which transform a quantum state to anothe…

quant-ph2018

A Quantum Algorithm for Solving Linear Differential Equations: Theory and Experiment

Tao Xin, Shijie Wei, Jianlian Cui +7

We present and experimentally realize a quantum algorithm for efficiently solving the following problem: given an matrix , an -dimensional vector $\text…

quant-ph2018

Experimental realization of quantum algorithms for linear system inspired by adiabatic quantum computing

Jingwei Wen, Xiangyu Kong, Shijie Wei +3

Quantum adiabatic algorithm is of vital importance in quantum computation field. It offers us an alternative approach to manipulate the system instead of quantum gate model. Recent…

quant-ph2018

Experimental realization of noise-induced adiabaticity in nuclear magnetic resonance

B X Wang, T Xin, X Y Kong +3

The adiabatic evolution is the dynamics of an instantaneous eigenstate of a slowly varing Hamiltonian. Recently, an interesting phenomenon shows up that white noises can enhance an…

quant-ph20172 cited

Implementation of Multiparty quantum clock synchronization

Xiangyu Kong, Tao Xin, ShiJie Wei +4

The quantum clock synchronization (QCS) is to measure the time difference among the spatially separated clocks with the principle of quantum mechanics. The first QCS algorithm prop…