Characterization of Instability in Ti-indiffused LiNbO3 Modulators Due to Photorefractive and Non-Optical Sources*

R. Becker
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引用次数: 0

Abstract

The utility of Ti-indiffused LiNbO3 modulators is limited in some applications by a slow temporal instability due to photorefractive and non-optical sources. In this paper we characterize these effects, separating instabilities which occur with or without an applied voltage due to photoconductive and photovoltaic effects respectively from those caused by non-optical sources. The characterization of optically induced instabilities includes an evaluation of devices fabricated on two different crystallographic orientations as well as a demonstration of a "fixing" technique that dramatically reduces the device susceptibility to the photorefractive effect. A simple RC circuit is used to model instabilities not optically induced that occur when a dc or quasi-dc voltage is applied.
光折变和非光源对ti扩散LiNbO3调制器不稳定性的表征*
由于光折变和非光源造成的缓慢的时间不稳定性,限制了钛扩散LiNbO3调制器的应用。在本文中,我们对这些效应进行了表征,将分别由光导效应和光伏效应引起的不稳定性与由非光源引起的不稳定性分开。光诱导不稳定性的表征包括在两种不同晶体取向上制造的器件的评估,以及“固定”技术的演示,该技术显着降低了器件对光折变效应的敏感性。一个简单的RC电路被用来模拟当施加直流或准直流电压时发生的非光诱导的不稳定性。
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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