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Dive into the research topics where Feng-Guang Li is active.

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Featured researches published by Feng-Guang Li.


Quantum Information Processing | 2017

Universal blind quantum computation for hybrid system

He-Liang Huang; Wan-Su Bao; Tan Li; Feng-Guang Li; Xiang-Qun Fu; Shuo Zhang; Hai-Long Zhang; Xiang Wang

As progress on the development of building quantum computer continues to advance, first-generation practical quantum computers will be available for ordinary users in the cloud style similar to IBM’s QuantumExperience nowadays. Clients can remotely access the quantum servers using some simple devices. In such a situation, it is of prime importance to keep the security of the client’s information. Blind quantum computation protocols enable a client with limited quantum technology to delegate her quantum computation to a quantum server without leaking any privacy. To date, blind quantum computation has been considered only for an individual quantum system. However, practical universal quantum computer is likely to be a hybrid system. Here, we take the first step to construct a framework of blind quantum computation for the hybrid system, which provides a more feasible way for scalable blind quantum computation.


Scientific Reports | 2017

Statistical Analysis for Collision-free Boson Sampling

He-Liang Huang; Han-Sen Zhong; Tan Li; Feng-Guang Li; Xiang-Qun Fu; Shuo Zhang; Xiang Wang; Wan-Su Bao

Boson sampling is strongly believed to be intractable for classical computers but solvable with photons in linear optics, which raises widespread concern as a rapid way to demonstrate the quantum supremacy. However, due to its solution is mathematically unverifiable, how to certify the experimental results becomes a major difficulty in the boson sampling experiment. Here, we develop a statistical analysis scheme to experimentally certify the collision-free boson sampling. Numerical simulations are performed to show the feasibility and practicability of our scheme, and the effects of realistic experimental conditions are also considered, demonstrating that our proposed scheme is experimentally friendly. Moreover, our broad approach is expected to be generally applied to investigate multi-particle coherent dynamics beyond the boson sampling.


Journal of Physics B | 2017

Ground state cooling in a hybrid optomechanical system with a three-level atomic ensemble

Tan Li; Shuo Zhang; He-Liang Huang; Feng-Guang Li; Xiang-Qun Fu; Xiang Wang; Wan-Su Bao

Cooling mechanical resonators is of great importance for both fundamental study and applied science. We investigate the hybrid optomechanical cooling with a three-level atomic ensemble fixed in a strong excited optical cavity. By using the quantum noise approach, we find the upper bound of the noise spectrum and further present three optimal parameter conditions, which can yield a small heating coefficient, a large cooling coefficient, and thus a small final phonon number. Moreover, through the covariance matrix approach, results of numerical simulation are obtained, which are consistent with the theoretical expectations. It is demonstrated that our scheme can achieve ground state cooling in the highly unresolved sideband regime, within the current experimental technologies. Compared with the previous cooling methods, in our scheme, there are fewer constraints on the drive strength of atomic ensemble and number of atoms in the ensemble. In addition, the tolerable ranges of parameters for ground state cooling are extended. As a result, our scheme is very suitable for experiments and can be a guideline for the research of hybrid optomechanical cooling.


Frontiers of Physics in China | 2017

Homomorphic encryption experiments on IBM’s cloud quantum computing platform

He-Liang Huang; You-Wei Zhao; Tan Li; Feng-Guang Li; Yu-Tao Du; Xiang-Qun Fu; Shuo Zhang; Xiang Wang; Wan-Su Bao


Physics Letters A | 2017

Deterministic linear optical quantum Toffoli gate

He-Liang Huang; Wan-Su Bao; Tan Li; Feng-Guang Li; Xiang-Qun Fu; Shuo Zhang; Hai-Long Zhang; Xiang Wang


Chinese Physics B | 2018

Transitionless driving on local adiabatic quantum search algorithm

Feng-Guang Li; Wan-Su Bao; Shuo Zhang; Xiang Wang; He-Liang Huang; Tan Li; Bo-wen Ma


arXiv: Quantum Physics | 2018

Complementary-multiphase quantum search for all numbers of target items

Tan Li; Wansu Bao; He-Liang Huang; Feng-Guang Li; Xiangqun Fu; Shuo Zhang; Chu Guo; Yu-Tao Du; Xiang Wang; Jie Lin


Physics Letters A | 2018

Role of coherence in adiabatic search algorithms

Feng-Guang Li; Wan-Su Bao; Shuo Zhang; He-Liang Huang; Tan Li; Xiang Wang; Xiang-Qun Fu


Archive | 2018

Research on phases of Grover-type algorithms

Bo-wen Ma; Wan-Su Bao; Xiang Wang; Xiang-qun Fu; Shuo Zhang; Tan Li; Feng-Guang Li


Communications in Theoretical Physics | 2017

Success Rate Versus Finite Run Time in Local Adiabatic Quantum Search Algorithm

Feng-Guang Li; Wan-Su Bao; Xiang Wang; Xiangqun Fu; Shuo Zhang; Yu-Tao Du; Tan Li; Bo-wen Ma

Collaboration


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Shuo Zhang

National University of Defense Technology

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Tan Li

University of Science and Technology of China

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Wan-Su Bao

University of Science and Technology of China

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Xiang Wang

University of Science and Technology of China

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He-Liang Huang

University of Science and Technology of China

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Xiang-Qun Fu

University of Science and Technology of China

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Hai-Long Zhang

University of Science and Technology of China

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Xiangqun Fu

University of Science and Technology of China

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Chun-Wang Wu

National University of Defense Technology

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Han-Sen Zhong

University of Science and Technology of China

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