Counterpropagating entangled photons in a periodically poled nonlinear waveguide

M. C. Booth, M. Atature, G. Di Giuseppe, A. Sergienko, B. Saleh, M. Teich
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引用次数: 1

Abstract

Entangled photons, which may be generated through the process of spontaneous parametric down-conversion (SPDC) in a crystal with /spl chi//sup (2)/ nonlinearity, have long been in the spotlight for quantum-optics experiments. The generation of entangled photons by quasi-phase matching (QPM) in lithium niobate offers the promise of increased photon-pair production and, with the integration of a waveguide structure, control of the spatial characteristics of the down-converted photons. It turns out that the use of a waveguide structure, in conjunction with periodic poling to achieve quasi-phase matching, offers another critically important feature: the possibility of generating counterpropagating signal and idler photons. We consider the conditions required for generating counterpropagating photon beams and explore some of the unique properties of this source of light using a periodically poled LiNbO/sub 3/ waveguide.
周期极化非线性波导中反向传播的纠缠光子
在具有/spl chi//sup(2)/非线性的晶体中,通过自发参量下转换(SPDC)过程产生的纠缠光子一直是量子光学实验研究的热点。在铌酸锂中通过准相位匹配(QPM)产生纠缠光子提供了增加光子对产生的希望,并且通过波导结构的集成,可以控制下转换光子的空间特性。事实证明,使用波导结构,结合周期性极化来实现准相位匹配,提供了另一个至关重要的特性:产生反传播信号和空闲光子的可能性。我们考虑了产生反向传播光子光束所需的条件,并利用周期性极化的LiNbO/sub - 3/波导探索了这种光源的一些独特特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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