Interference of short optical pulses from independent gain-switched laser diodes for quantum secure communications
arXiv:1501.01900 · doi:10.1103/PhysRevApplied.2.064006
Abstract
Since the introduction of the decoy-state technique, phase-randomised weak coherent light pulses have been the key to increase the practicality of quantum-based communications. Their ultra-fast generation was accomplished via compact gain-switched (GS) lasers, leading to high key rates in quantum key distribution (QKD). Recently, the question arose of whether the same laser could be employed to achieve high-speed measurement-device-independent-QKD, a scheme that promises long-haul quantum communications immune to all detector attacks. For that, a challenging highvisibility interference between independent picosecond optical pulses is required. Here, we answer the above question in the affirmative by demonstrating high-visibility interference from two independent GS lasers triggered at 1GHz. The result is obtained through a careful characterization of the laser frequency chirp and time jitter. By relating these quantities to the interference visibility, we obtain a parameter-free verification of the experimental data and a numerical simulation of the achievable key rates. These findings are beneficial to other applications making use of GS lasers, including random number generation and standard QKD.
6 pages, 5 figures
References in corpus (10)
- Experimental quantum teleportation
- Secure Quantum Key Distribution
- Gigahertz decoy quantum key distribution with 1 Mbit/s secure key rate
- Coexistence of high-bit-rate quantum key distribution and data on optical fiber
- Experimental interference of independent photons
- Robust random number generation using steady-state emission of gain-switched laser diodes
- Interference of dissimilar photon sources
- Experimental quantum key distribution with active phase randomization
- Evaluation of the phase randomness of the light source in quantum key distribution systems with an attenuated laser
- Ultrashort dead time of photon-counting InGaAs avalanche photodiodes
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- Simplified intensity- and phase-modulated transmitter for modulator-free decoy-state quantum key distribution
- Self-Tuning Transmitter for Quantum Key Distribution Using Machine Intelligence
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