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Fast optical source for quantum key distribution based on semiconductor optical amplifiers

机译:基于半导体光放大器的用于量子密钥分发的快速光源

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摘要

A novel integrated optical source capable of emitting faint pulses with different polarization states and with different intensity levels at 100 MHz has been developed. The source relies on a single laser diode followed by four semiconductor optical amplifiers and thin film polarizers, connected through a fiber network. The use of a single laser ensures high level of indistinguishability in time and spectrum of the pulses for the four different polarizations and three different levels of intensity. The applicability of the source is demonstrated in the lab through a free space quantum key distribution experiment which makes use of the decoy state BB84 protocol. We achieved a lower bound secure key rate of the order of 3.64 Mbps and a quantum bit error ratio as low as 1.14 × 10−2 while the lower bound secure key rate became 187 bps for an equivalent attenuation of 35 dB. To our knowledge, this is the fastest polarization encoded QKD system which has been reported so far. The performance, reduced size, low power consumption and the fact that the components used can be space qualified make the source particularly suitable for secure satellite communication.
机译:已经开发出一种新颖的集成光源,该光源能够在100 MHz时发射具有不同偏振态和不同强度水平的微弱脉冲。光源依靠单个激光二极管,其后是通过光纤网络连接的四个半导体光放大器和薄膜偏振器。对于四种不同的偏振和三种不同的强度,使用单个激光器可确保在时间和脉冲频谱方面具有高度的可分辨性。通过使用诱骗状态BB84协议的自由空间量子密钥分发实验,在实验室中证明了该源的适用性。我们实现了3.64 Mbps量级的下限安全密钥率和低至1.14×10-2的量子误码率,而下限安全密钥率达到187 bps,等效衰减为35 dB。据我们所知,这是迄今为止最快的极化编码QKD系统。性能,减小的尺寸,低功耗以及所用组件可以满足空间要求的事实使该信号源特别适合于安全的卫星通信。

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