掺铒光纤非线性环形谐振腔中纠缠光子的再生与表征

W. Khunnam, P. Yupapin
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引用次数: 0

摘要

研究了一种新的纠缠光子态再生方案——掺铒光纤非线性环形谐振腔中光的动态模拟。我们已经证明,弱纠缠光子态在放大后的光纤介质中循环后可以恢复。通过调节放大光子的偏振控制器,可以重新生成输出的纠缠光子态,从而控制和执行重新生成的纠缠态。环腔寿命比光纤环的克尔效应响应时间长得多。实验结果表明,该系统可以在获得高增益的情况下实现恢复的偏振纠缠态。在频谱输出上也检测到放大噪声。这对纠缠光子可见性的影响进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The entangled photon regeneration and characterization in a nonlinear fiber ring resonator incorporating an erbium-doped fiber
A new scheme of the entangled photon states re-generation the dynamic simulation of light traveling in nonlinear fiber optic ring resonator incorporating an erbium-doped fiber (EDF) has been investigated. We have shown that the weak entangled photon states can be recovered after circulating in the amplified fiber optic medium. The output entangled photon states can be re-generated by adjusting the polarization controller of the amplified photons, where the re-generated entangled states can be controlled and performed. The ring-cavity lifetime is much longer than the Kerr-effect response time of the fiber ring. The results obtained have shown that this system can be used to achieve the recovered polarization entangled states with the obtained high gain. The amplifying noise has also been detected and seen on the spectrum output. This is affected to the entangled photon visibility, which is discussed.
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