采用亚微米极化KTP波导的高阶自发参数下转换与反向传播闲散器

M. Bashkansky, M. Pruessner, I. Vurgaftman, Mijin Kim, J. Reintjes
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引用次数: 3

摘要

准相位匹配条件下周期性极化非线性光学晶体的自发参量下转换(SPDC)在量子光学中有着广泛的应用。由于在晶体中使用通道波导,使得单模光纤具有高效率和良好的耦合性。通常希望信号和空闲光子具有非常窄的带宽,但在典型的工作条件下,相位匹配决定了SPDC的带宽为<1 nm的数量级。这是因为共传播信号和空闲光子纠缠在一起,并且信号波矢量的增加由空闲波矢量的减少来补偿。减少带宽的一种方法是形成外部或内部空腔。此外,当信号和闲散子反向传播时,可以在没有空腔的情况下减少带宽,并且波矢量随频率的变化是加性的。为了实现这一点,需要在波长尺度上进行域反演。在这项工作中,我们通过实验证明了基于ktp的一维波导中的SPDC具有亚微米级的正向和反向相互作用。周期极化波导中的模式耦合理论解释了产生光的一些光谱特征,但其他特征尚未解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Higher-order spontaneous parametric down-conversion with back-propagating idler using a submicron poled KTP waveguide
Spontaneous parametric downconversion (SPDC) using periodically poled nonlinear optical crystals under the quasiphase- matching condition has found wide use in quantum optics. High efficiencies and good coupling to single-mode fibers resulted from using channel waveguides in crystals. It is often desirable to have a very narrow bandwidth for the signal and idler photons, but under the typical operating conditions, phase matching dictates the bandwidth of the SPDC to be of the order of <1 nm. This occurs because the co-propagating signal and idler photons are entangled, and an increase of the signal wave-vector is compensated by a decrease of the idler wave-vector. One way to reduce the bandwidth is by forming either external or internal cavities. Additionally, bandwidth reduction is possible without cavities when the signal and idler are counter-propagating, and the changes in the wave-vector with frequency are additive. To accomplish this a domain inversion on the wavelength scale is required. In this work, we experimentally demonstrate SPDC in one-dimensional KTP-based waveguides with sub-micron poling for forward and backward interactions. Some of the spectral features of the generated light are accounted for by mode coupling theory in periodically poled waveguides but other features are as yet not explained.
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