非线性薄膜中纠缠光子对的产生。

Nanophotonics (Berlin, Germany) Pub Date : 2024-06-03 eCollection Date: 2024-08-01 DOI:10.1515/nanoph-2024-0111
Elkin A Santos, Maximilian A Weissflog, Thomas Pertsch, Frank Setzpfandt, Sina Saravi
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引用次数: 0

摘要

我们发展了一个全矢量和非旁轴的形式来描述非线性薄膜中的自发参数下转换。这种形式能够处理亚波长厚度的板,描述相关的法布里-帕姆罗效应,甚至处理吸收非线性材料。利用这种形式,我们对非线性薄膜中纠缠光子对产生的动力学进行了深入的研究,为最近作为光子对源引起了很多实验关注的这种系统提供了必要的理论理解。作为一个重要的例子,我们研究了在线性低折射率衬底上沉积具有锌-闪锌矿结构的高折射率非线性薄膜所产生的光子对的远场辐射特性。特别地,我们研究了fabry - p杂波干涉对光子对远场辐射方向图的厚度依赖效应。我们还特别关注了纠缠产生的研究,并找到了在这种非线性薄膜中产生和检测最大偏振纠缠光子对的条件。
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Entangled photon-pair generation in nonlinear thin-films.

We develop a fully vectorial and non-paraxial formalism to describe spontaneous parametric down-conversion in nonlinear thin films. The formalism is capable of treating slabs with a sub-wavelength thickness, describe the associated Fabry-Pérot effects, and even treat absorptive nonlinear materials. With this formalism, we perform an in-depth study of the dynamics of entangled photon-pair generation in nonlinear thin films, to provide a needed theoretical understanding for such systems that have recently attracted much experimental attention as sources of photon pairs. As an important example, we study the far-field radiation properties of photon pairs generated from a high-refractive-index nonlinear thin-film with zinc-blende structure that is deposited on a linear low-refractive-index substrate. In particular, we study the thickness-dependent effect of Fabry-Pérot interferences on the far-field radiation pattern of the photon pairs. We also pay special attention to study of entanglement generation, and find the conditions under which maximally polarization-entangled photon pairs can be generated and detected in such nonlinear thin-films.

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