纠缠光子源中最大保真度的收集光学优化

IF 1.4 Q3 PHYSICS, MULTIDISCIPLINARY
K. Durak
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引用次数: 0

摘要

本文研究了自发参量下转换现象产生的纠缠光子的退相干源。光子对与正交晶体的相位和空间可分辨性降低了可实现的最大纠缠保真度。精心选择的补偿晶体用于擦除下转换起源的相位和空间痕迹。光子对的发射角也会导致光路的差异,从而导致相位的可分辨性。对现实场景进行了数值模拟,其中具有非零发射角的光子对聚集了相位差。这些对仍然可以被收集和操作以用于实际使用,但是收集光学器件增加了相位差。两个商业上可买到的光学器件用于收集;比较了非球面透镜和消色差透镜。将数值模拟结果与实验结果进行比较,验证了所建立的模型在预测最大可实现纠缠保真度方面的有效性。结果表明,通过在模型中加入实验参数,可以准确地估计保真度。该研究对临界相位匹配配置下纠缠光子对源的制备和优化具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of collection optics for maximum fidelity in entangled photon sources
In this report the decoherence sources for entangled photons created by spontaneous parametric down conversion phenomenon is studied. The phase and spatial distinguishability of photon pairs from orthogonal crystals reduce the maximum achievable entanglement fidelity. Carefully chosen compensation crystals are used to erase the phase and spatial traces of down conversion origins. Emission angle of photon pairs also leads to optical path difference and resulting in phase distinguishability. A realistic scenario is numerically modelled, where the photon pairs with nonzero emission angle gather a phase difference. These pairs can still be collected and manipulated for practical use but the collection optics adds upon the phase difference. Two commercially available optics for collection; aspheric and achromatic lenses are compared. The numerical simulation results are compared with the experimental results to validate the built model for predicting the maximum achievable entanglement fidelity. The results indicate that the fidelity can be accurately estimated with the presented model by inserting the experimental parameters to it. The study is expected to be very useful for preparation and optimization of entangled photon pair sources in critical phase-matching configuration.
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来源期刊
Turkish Journal of Physics
Turkish Journal of Physics PHYSICS, MULTIDISCIPLINARY-
CiteScore
3.50
自引率
0.00%
发文量
8
期刊介绍: The Turkish Journal of Physics is published electronically 6 times a year by the Scientific and Technological Research Council of Turkey (TÜBİTAK) and accepts English-language manuscripts in various fields of research in physics, astrophysics, and interdisciplinary topics related to physics. Contribution is open to researchers of all nationalities.
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