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Femtosecond laser-pumped source of entangled photons for quantum cryptography applications

机译:用于量子密码术应用的Femtosecond激光泵浦源性光子源

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We present an experimental setup for generation of entangled-photon pairs via spontaneous parametric down-conversion, based on the femtosecond-pulsed laser. Our entangled-photon source utilizes a 76-MHz-repetition-rate, 100-fs-pulsewidth, mode-locked, ultrafast femtosecond laser, which can produce, on average, more photon pairs than a cw laser of an equal pump power. The output infrared pump photons (λ = 810 nm) are first up-converted to blue light (λ = 405 nm) and, subsequently, down-converted in a 1.5-mm-thick, type-II BBO crystal via spontaneous down-conversion. The resulting entangled pairs are counted by a pair of high-quantum-efficiency, single-photon, silicon avalanche photodiodes. The total down-conversion efficiency of our system, corresponding criterion of the pump power for real entangled coincident events, has been calculated to be 0.86 × 10-9. Our apparatus is intended as an efficient source/receiver system for the quantum communications and quantum cryptography applications.
机译:我们提出通过自发参量下转换用于产生纠缠光子对的实验装置的基础上,飞秒的脉冲激光。我们的纠缠光子源利用76-MHz的重复率,100-FS-脉宽,锁模,超快飞秒激光,能产生,平均来说,更光子对比等量的泵功率的CW激光。输出红外泵浦光子(λ= 810纳米)首先被向上转换为蓝色光(λ= 405nm)的,随后,下变频在1.5毫米厚的,II型BBO通过自发下转换晶体。将得到的纠缠对通过对高量子效率,单光子,硅雪崩光电二极管计数。相应的泵浦功率为真正纠缠符合事件的规范我们的系统的总下转换效率,已被计算为0.86×10-9。我们的装置旨在为量子通信和量子密码的应用程序的有效源/接收器系统。

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