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Featured researches published by Dakai Lin.


Scientific Reports | 2016

Long-distance continuous-variable quantum key distribution by controlling excess noise.

Duan Huang; Peng Huang; Dakai Lin; Guihua Zeng

Quantum cryptography founded on the laws of physics could revolutionize the way in which communication information is protected. Significant progresses in long-distance quantum key distribution based on discrete variables have led to the secure quantum communication in real-world conditions being available. However, the alternative approach implemented with continuous variables has not yet reached the secure distance beyond 100 km. Here, we overcome the previous range limitation by controlling system excess noise and report such a long distance continuous-variable quantum key distribution experiment. Our result paves the road to the large-scale secure quantum communication with continuous variables and serves as a stepping stone in the quest for quantum network.


Optics Express | 2015

Continuous-variable quantum key distribution with 1 Mbps secure key rate.

Duan Huang; Dakai Lin; Chao Wang; Weiqi Liu; Shuanghong Fang; Jinye Peng; Peng Huang; Guihua Zeng

We report the first continuous-variable quantum key distribution (CVQKD) experiment to enable the creation of 1 Mbps secure key rate over 25 km standard telecom fiber in a coarse wavelength division multiplexers (CWDM) environment. The result is achieved with two major technological advances: the use of a 1 GHz shot-noise-limited homodyne detector and the implementation of a 50 MHz clock system. The excess noise due to noise photons from local oscillator and classical data channels in CWDM is controlled effectively. We note that the experimental verification of high-bit-rate CVQKD in the multiplexing environment is a significant step closer toward large-scale deployment in fiber networks.


Scientific Reports | 2015

25 MHz clock continuous-variable quantum key distribution system over 50 km fiber channel

Chao Wang; Duan Huang; Peng Huang; Dakai Lin; Jinye Peng; Guihua Zeng

In this paper, a practical continuous-variable quantum key distribution system is developed and it runs in the real-world conditions with 25 MHz clock rate. To reach high-rate, we have employed a homodyne detector with maximal bandwidth to 300 MHz and an optimal high-efficiency error reconciliation algorithm with processing speed up to 25 Mbps. To optimize the stability of the system, several key techniques are developed, which include a novel phase compensation algorithm, a polarization feedback algorithm, and related stability method on the modulators. Practically, our system is tested for more than 12 hours with a final secret key rate of 52 kbps over 50 km transmission distance, which is the highest rate so far in such distance. Our system may pave the road for practical broadband secure quantum communication with continuous variables in the commercial conditions.


International Journal of Quantum Information | 2015

High performance reconciliation for continuous-variable quantum key distribution with LDPC code

Dakai Lin; Duan Huang; Peng Huang; Jinye Peng; Guihua Zeng

Reconciliation is a significant procedure in a continuous-variable quantum key distribution (CV-QKD) system. It is employed to extract secure secret key from the resulted string through quantum channel between two users. However, the efficiency and the speed of previous reconciliation algorithms are low. These problems limit the secure communication distance and the secure key rate of CV-QKD systems. In this paper, we proposed a high-speed reconciliation algorithm through employing a well-structured decoding scheme based on low density parity-check (LDPC) code. The complexity of the proposed algorithm is reduced obviously. By using a graphics processing unit (GPU) device, our method may reach a reconciliation speed of 25 Mb/s for a CV-QKD system, which is currently the highest level and paves the way to high-speed CV-QKD.


Optics Express | 2015

High performance frame synchronization for continuous variable quantum key distribution systems.

Dakai Lin; Peng Huang; Duan Huang; Chao Wang; Jinye Peng; Guihua Zeng

Considering a practical continuous variable quantum key distribution(CVQKD) system, synchronization is of significant importance as it is hardly possible to extract secret keys from unsynchronized strings. In this paper, we proposed a high performance frame synchronization method for CVQKD systems which is capable to operate under low signal-to-noise(SNR) ratios and is compatible with random phase shift induced by quantum channel. A practical implementation of this method with low complexity is presented and its performance is analysed. By adjusting the length of synchronization frame, this method can work well with large range of SNR values which paves the way for longer distance CVQKD.


conference on lasers and electro optics | 2014

Experimental realization of a photon-number-resolving homodyne detector

Duan Huang; Erhu Han; Weiqi Liu; Dakai Lin; Chao Wang; Peng Huang; Guihua Zeng

We demonstrate a photon-number-resolving homodyne detector based on InGaAs PIN photodiodes with active phase compensation. Our detector preserves the capable of detecting single photon and allows 20 photons to be precisely discriminated.


Optics Letters | 2015

High-speed continuous-variable quantum key distribution without sending a local oscillator.

Duan Huang; Peng Huang; Dakai Lin; Chao Wang; Guihua Zeng


Physical Review A | 2016

Practical security of continuous-variable quantum key distribution with finite sampling bandwidth effects

Chao Wang; Peng Huang; Duan Huang; Dakai Lin; Guihua Zeng


International Journal of Theoretical Physics | 2015

Security of Continuous-Variable Quantum Key Distribution with Imperfect Phase Compensation

Peng Huang; Dakai Lin; Duan Huang; Guihua Zeng


Science China-physics Mechanics & Astronomy | 2015

Hybrid quantum private communication with continuous-variable and discrete-variable signals

Weiqi Liu; Jinye Peng; Chao Wang; Zheng-Wen Cao; Duan Huang; Dakai Lin; Peng Huang; Guihua Zeng

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Duan Huang

Shanghai Jiao Tong University

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Guihua Zeng

Shanghai Jiao Tong University

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Peng Huang

Shanghai Jiao Tong University

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Chao Wang

Shanghai Jiao Tong University

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Erhu Han

Shanghai Jiao Tong University

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