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Dive into the research topics where He Guang-Qiang is active.

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Featured researches published by He Guang-Qiang.


Chinese Physics | 2007

Security analysis of continuous-variable quantum key distribution scheme

Zhu Jun; He Guang-Qiang; Zeng Gui-Hua

In this paper security of the quantum key distribution scheme using correlations of continuous variable Einstein–Podolsky–Rosen (EPR) pairs is investigated. A new approach for calculating the secret information rate ΔI is proposed by using the Shannon information theory. Employing an available parameter F which is associated with the entanglement of the EPR pairs, one can detect easily the eavesdropping. Results show that the proposed scheme is secure against individual beam splitter attack strategy with a proper squeeze parameter.


Chinese Physics B | 2008

Security of quantum key distribution using two-mode squeezed states against optimal beam splitter attack ⁄

He Guang-Qiang; Zhu Si-Wei; Guo Hong-Bin; Zeng Gui-Hua

For the beam splitter attack strategy against quantum key distribution using two-mode squeezed states, the analytical expression of the optimal beam splitter parameter is provided in this paper by applying the Shannon information theory. The theoretical secret information rate after error correction and privacy amplification is given in terms of the squeezed parameter and channel parameters. The results show that the two-mode squeezed state quantum key distribution is secure against an optimal beam splitter attack.


Chinese Physics | 2006

Deterministic quantum key distribution based on Gaussian-modulated EPR correlations

He Guang-Qiang; Zeng Gui-Hua

A continuous variable ping-pong scheme, which is utilized to generate deterministically private key, is proposed. The proposed scheme is implemented physically by using Gaussian-modulated squeezed states. The deterministic way, i.e., no basis reconciliation between two parties, leads a two-times efficiency comparing to the standard quantum key distribution schemes. Especially, the separate control mode does not need in the proposed scheme so that it is simpler and more available than previous ping-pong schemes. The attacker may be detected easily through the fidelity of the transmitted signal, and may not be successful in the beam splitter attack strategy.This paper proposes a deterministic quantum key distribution scheme based on Gaussian-modulated continuous variable EPR correlations. This scheme can implement fast and efficient key distribution. The security is guaranteed by continuous variable EPR entanglement correlations produced by nondegenerate optical parametric amplifier. For general beam splitter eavesdropping strategy, the secret information rate ΔI = I(α,β)−I(α,) is calculated in view of Shannon information theory. Finally the security analysis is presented.


Communications in Theoretical Physics | 2011

Deterministic Quantum Key Distribution Using Gaussian-Modulated Squeezed States

He Guang-Qiang; Zhu Jun; Zeng Gui-Hua

A continuous variable ping-pong scheme, which is utilized to generate deterministic private key, is proposed. The proposed scheme is implemented physically by using Gaussian-modulated squeezed states. The deterministic characteristic, i.e., no basis reconciliation between two parties, leads a nearly two-time efficiency comparing to the standard quantum key distribution schemes. Especially, the separate control mode does not need in the proposed scheme so that it is simpler and more available than previous ping-pong schemes. The attacker may be detected easily through the fidelity of the transmitted signal, and may not be successful in the beam splitter attack strategy.


Communications in Theoretical Physics | 2015

Theoretical Analysis of Spectral Correlations Between Photon Pairs Generated in Nanoscale Silicon Waveguides

Lu Liangliang; Xu Ping; Xu Jian-Ning; He Guang-Qiang; Zhu Shining

Spontaneous four wave mixing in nonlinear waveguide is one of the excellent technique for generating photon pairs in well-defined guided modes. Here we present a comprehensive study of the frequency characteristic of correlated photon pairs generated in telecom C-band from a dispersion-engineered silicon wire waveguide. We have demonstrated that the waveguide configuration, shape of pump pulse, two-photon absorption as well as linear losses have significant influences on the biphoton spectral characteristics and the amount of frequency entanglement generated. The superior performance as well as the structural compactness and CMOS compatibility makes the silicon wire waveguide an ideal integrated platform for the implementation of on-chip quantum technologies.


Communications in Theoretical Physics | 2006

Quantum Encryption Protocol Based on Continuous Variable EPR Correlations

He Guang-Qiang; Zeng Gui-Hua

A quantum encryption protocol based on Gaussian-modulated continuous variable EPR correlations is proposed. The security is guaranteed by continuous variable EPR entanglement correlations produced by nondegenerate optical parametric amplifier (NOPA). For general beam splitter eavesdropping strategy, the mutual information I(α,) between Alice and Eve is calculated by employing Shannon information theory. Finally the security analysis is presented.


Archive | 2015

Polarization compensation implementation method of continuous variable quantum key distribution system

Fang Jian; Huang Duan; He Guang-Qiang; Zeng Gui-Hua


Archive | 2013

Continuous variable quantum key distribution system and phase compensation method thereof

Shen Zeyuan; Xiao Junjun; Dai Wenchao; He Guang-Qiang; Zeng Gui-Hua


Physical Review A | 2011

Continuous-variable quantum teleportation in bosonic structured environments

He Guang-Qiang; Zhang Jingtao; Zhu Jun; Zeng Gui-Hua


Archive | 2005

Quantum status authentication system based on polarization modulation

He Guang-Qiang; Zeng Gui-Hua; Zeng Wenjie

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Zeng Gui-Hua

Shanghai Jiao Tong University

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Zhu Jun

Shanghai Jiao Tong University

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Guo Hong-Bin

Shanghai Jiao Tong University

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Yi Zhi

Shanghai Jiao Tong University

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Zhu Si-Wei

Shanghai Jiao Tong University

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Xiao Junjun

Shanghai Jiao Tong University

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