Ling Fan

About Ling Fan

Ling Fan, With an exceptional h-index of 10 and a recent h-index of 10 (since 2020), a distinguished researcher at Beijing University of Posts and Telecommunications, specializes in the field of Quantum information and information security.

His recent articles reflect a diverse array of research interests and contributions to the field:

Short-Term Load Forecasting Method for Industrial Buildings Based on Signal Decomposition and Composite Prediction Model

Controllable nonreciprocal phonon laser in a hybrid photonic molecule based on directional quantum squeezing

Iterative quantum algorithm for combinatorial optimization based on quantum gradient descent

Measurement-device-independent quantum secure multiparty summation based on entanglement swapping

Generation and manipulation of phonon lasering in a two-drive cavity magnomechanical system

Scheme for implementing nonlocal high-fidelity quantum controlled-not gates on quantum-dot-confined electron spins using optical microcavities and photonic hyperentanglement

Yu-Hong Han1, 2, 3, Cong Cao1, 4, 5*, Ling Fan 4, 5 and Ru Zhang

Deterministic CNOT gate and complete Bell-state analyzer on quantum-dot-confined electron spins based on faithful quantum nondemolition parity detection

Ling Fan Information

University

Position

___

Citations(all)

266

Citations(since 2020)

223

Cited By

95

hIndex(all)

10

hIndex(since 2020)

10

i10Index(all)

10

i10Index(since 2020)

10

Email

University Profile Page

Google Scholar

Ling Fan Skills & Research Interests

Quantum information and information security

Top articles of Ling Fan

Short-Term Load Forecasting Method for Industrial Buildings Based on Signal Decomposition and Composite Prediction Model

Sustainability

2024/3/19

Wenbo Zhao
Wenbo Zhao

H-Index: 3

Ling Fan
Ling Fan

H-Index: 6

Controllable nonreciprocal phonon laser in a hybrid photonic molecule based on directional quantum squeezing

Optics Express

2024/1/15

Iterative quantum algorithm for combinatorial optimization based on quantum gradient descent

Results in Physics

2024/1/1

Measurement-device-independent quantum secure multiparty summation based on entanglement swapping

Laser Physics Letters

2023/10/30

Ling Fan
Ling Fan

H-Index: 6

Cong Cao
Cong Cao

H-Index: 2

Generation and manipulation of phonon lasering in a two-drive cavity magnomechanical system

New Journal of Physics

2023/6/1

Scheme for implementing nonlocal high-fidelity quantum controlled-not gates on quantum-dot-confined electron spins using optical microcavities and photonic hyperentanglement

Frontiers in Physics

2022/9/23

Yu-Hong Han1, 2, 3, Cong Cao1, 4, 5*, Ling Fan 4, 5 and Ru Zhang

2022

Deterministic CNOT gate and complete Bell-state analyzer on quantum-dot-confined electron spins based on faithful quantum nondemolition parity detection

JOSA B

2021/5/1

Ling Fan
Ling Fan

H-Index: 6

Cong Cao
Cong Cao

H-Index: 2

High-fidelity hybrid universal quantum controlled gates on photons and quantum-dot spins

International Journal of Theoretical Physics

2021/3

Implementation of a single-photon fully quantum router with cavity QED and linear optics

Optical and Quantum Electronics

2021/1

Quantum secure multi-party summation protocol based on blind matrix and quantum Fourier transform

Quantum Information Processing

2021/7

Heralded high-fidelity quantum hyper-CNOT gates assisted by charged quantum dots inside single-sided optical microcavities

Optics Express

2021/6/21

Fluorine passivation of ODC defects in amorphous germanium dioxide

Journal of Non-Crystalline Solids

2020/12/15

Error-Detected Generation of High-Fidelity Photonic Hyperentanglement in Polarization-Spatial-Time Three Degrees of Freedom Assisted by Quantum-Dot Spins

International Journal of Theoretical Physics

2020/12

Implementation of an E-payment security evaluation system based on quantum blind computing

International Journal of Theoretical Physics

2020/9

Complete and faithful hyperentangled-Bell-state analysis of photon systems using a failure-heralded and fidelity-robust quantum gate

Optics express

2020/2/3

See List of Professors in Ling Fan University(Beijing University of Posts and Telecommunications)

Co-Authors

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