Time-resolved ultrafast all-optical switching in directional couplers with second-order nonlinearity

A. Solntsev, D. Neshev, R. Schiek
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Abstract

Nonlinear directional couplers (NLDC) allow for ultrafast all-optical switching. To date, various types of NLDCs have been studied, predominantly based on the Kerr [1] or cascaded quadratic nonlinearity [2] in second-harmonic generation (SHG). In the later case the switching can occur at lower powers because of a propagating-wave resonance effect. While a number of experiments to characterise the pulse propagation in Kerr-type couplers exist, till now the temporal behavior of short pulses in the NLDC with quadratic nonlinearity has never been studied experimentally. Several important questions such as the reason for incomplete switching and possible pulse compression factors remain unanswered. In this work we experimentally measure the pulse reshaping in a NLDC with second-order nonlinearity and show that pulse compression, break-up and back-switching play an important role in the switching process.
二阶非线性定向耦合器中时间分辨超快全光开关
非线性定向耦合器(NLDC)允许超快全光开关。迄今为止,已经研究了各种类型的NLDCs,主要基于二次谐波产生(SHG)中的Kerr[1]或级联二次非线性[2]。在后一种情况下,由于传播波共振效应,开关可以在较低的功率下发生。虽然已有许多实验来表征克尔型耦合器中脉冲的传播特性,但到目前为止,还没有对具有二次非线性的短脉冲在NLDC中的时间行为进行实验研究。几个重要的问题,如不完全开关的原因和可能的脉冲压缩因素仍然没有答案。本文通过实验测量了二阶非线性NLDC中的脉冲整形,并证明了脉冲压缩、破裂和反向开关在开关过程中起着重要作用。
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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