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Robust high brightness degenerate entangled photon source at room temperature

机译:室温下坚固高亮度退化的纠缠光子源

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摘要

We report on a compact, simple and robust high brightness entangled photon source at room temperature. Based on a 30-mm-long periodically-poled potassium titanyl phosphate crystal, the source produces non-collinear, type-0, phase-matched, degenerate photons at 810 nm with spectral brightness as high as ~0.41 ± 0.02 (~0.025 ± 0.02) MHz/mWm for multi (single) mode fiber coupling. So far, this is the highest number of degenerate photons generated using a continuous-wave laser pumped bulk crystal and detected using multimode fiber. We have studied the dependence of pump focusing on the brightness of the generated photons collected using both multimode, and single mode fibers. For a fixed pump power and crystal parameters, the SPDC source has an optimum pump waist radius producing maximum number of paired photons. Combining the crystal in a novel system architecture comprised with Sagnac interferometer and polarizing optical elements, the source produces polarization entangled photon states with high spectral brightness. Even in the absence of any phase compensation, the entangled photon states detected using single mode fiber have a Bell’s parameter, S = 2.63 ± 0.02, violating the Bell’s inequality by nearly 32 standard deviations and fidelity of 0.975. The compact footprint, robust design, and room temperature operation, make our source ideal for various quantum communication experiments.
机译:我们报告了一种紧凑,简单和强大的高亮度纠缠光子源,在室温下。该光源基于30毫米长的周期性极化钛氧钛磷酸钾晶体,在810 nm处产生非共线,0型,相位匹配,简并的简并光子,光谱亮度高达〜0.41±0.02(〜0.025± 0.02)MHz / mW / nm用于多(单)模光纤耦合。到目前为止,这是使用连续波激光泵浦块状晶体产生并使用多模光纤检测到的最大数量的简并光子。我们已经研究了泵浦的依赖性,该依赖性集中于使用多模和单模光纤收集的所产生光子的亮度。对于固定的泵浦功率和晶体参数,SPDC源具有最佳的泵浦腰半径,可产生最大数量的成对光子。该光源将晶体与包含Sagnac干涉仪和偏振光学元件的新型系统架构相结合,可产生具有高光谱亮度的偏振纠缠光子态。即使没有任何相位补偿,使用单模光纤检测到的纠缠光子状态也具有Bell参数,S = 2.63±0.02,违反了Bell不等式近32个标准差和0.975的保真度。紧凑的尺寸,坚固的设计和室温下的操作使我们的信号源成为各种量子通信实验的理想选择。

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