首页> 外文会议>Conference on nonlinear frequency generation and conversion: Materials, devices, and applications VIII; 20090127-29; San Jose, CA(US) >Analysis of the interactions of bright photovoltaic low-divergence soliton-like fields in unbiased self-defocusing photorefractive BaTiO_3
【24h】

Analysis of the interactions of bright photovoltaic low-divergence soliton-like fields in unbiased self-defocusing photorefractive BaTiO_3

机译:无偏自散焦光折变BaTiO_3中明亮的光伏低散度类孤子场的相互作用分析

获取原文
获取原文并翻译 | 示例

摘要

Optical spatial solitons are of interest at present due their possible application to integrated all optical circuitry where light controls light. This optical circuitry utilises the various novel properties of the optical spatial soliton, such as rewritable waveguides, and phase dependent interactions. Of all the types of optical spatial solitons, photorefractive (PR) solitons are the subject of much research due to their ease of production and stability. They are readily produced in either self-focusing PR media (photovoltaic solitons), or self-defocusing PR media with an applied external bias (screening solitons). The external bias, typically an applied DC filed, is used to manipulate the self-defocusing PR media to act like self-focusing PR media. However, solitons produced in self-focusing PR media run the risk of over focusing causing permanent damage to the PR media, while applying an external bias to the PR media requires many additional components, increasing the complexity of the system. Recently, we outlined for the first time a theoretical model of soliton-like low divergence fields in unbiased self-defocusing PR media. Numerical analysis of these soliton-like fields showed stability over distances well in excess of both the confocal distance of the beam, and the physical size of the PR media. The present research examines the existence of the low-divergence soliton-like fields and the fundamental nature of the interactions of these low-divergence soliton-like fields in unbiased PR self-defocusing media. Here we show that low-divergence soliton-like fields can be produced in unbiased self-defocusing photorefractive media, and that when the two of these soliton-like fields interact within the PR media, they are forced away from each other.
机译:光学空间孤子目前很受关注,因为它们有可能应用于集成所有控制光的光学电路。该光学电路利用了光学空间孤子的各种新颖特性,例如可重写波导和依赖于相位的相互作用。在所有类型的光学空间孤子中,光折变(PR)孤子由于易于生产和稳定性而成为许多研究的主题。它们可以很容易地在自聚焦PR介质(光伏孤子)中产生,也可以在施加外部偏置的自散焦PR介质(屏蔽孤子)中产生。外部偏置(通常是施加的DC字段)用于操纵自散焦PR介质,使其像自散焦PR介质一样工作。但是,在自聚焦PR介质中产生的孤子有过度聚焦的风险,会对PR介质造成永久性损坏,而对PR介质施加外部偏压则需要许多其他组件,从而增加了系统的复杂性。最近,我们首次概述了在无偏自散焦PR介质中类孤子状低发散场的理论模型。这些类孤子场的数值分析表明,在远距离上的稳定性远远超过光束的共焦距离和PR介质的物理尺寸。本研究研究了低偏散孤子场的存在以及这些低散孤子场在无偏PR自散焦介质中相互作用的基本性质。在这里,我们显示低偏散孤子场可以在无偏自散焦光折射介质中产生,并且当这两个孤子场在PR介质中相互作用时,它们被迫彼此分开。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号