首页> 外文会议>Nonlinear optics and applications V >PhoXonic architectures for tailoring the acousto-optic interaction
【24h】

PhoXonic architectures for tailoring the acousto-optic interaction

机译:用于定制声光交互的PhoXonic体系结构

获取原文
获取原文并翻译 | 示例

摘要

Periodic media offer impressive opportunities to manipulate the transport of classical waves namely light or sound. Elastic waves can scatter light through the so-called acousto-optic interaction which is widely used to control light in telecommunication systems and, additionally, the radiation pressure of light can generate elastic waves. Concurrent control of both light and sound through simultaneous photonic-phononic, often called phoxonic, bandgap structures is intended to advance both our understanding as well as our ability to manipulate light with sound and vise versa. In particular co-localization of light and sound in phoxonic cavities could trigger nonlinear absorption and emission processes and lead to enhanced acousto-optic effects. In the present communication, we present our efforts towards the design of different phoxonic crystal architectures such as three-dimensional metallodielectric structures, two-dimensional patterned silicon slabs and simple one-dimensional multilayers, and provide optimum parameters for operation at telecom light and GHz sound. These structures can be used to design phoxonic cavities and study the acousto-optic interaction of localized light and sound, or phoxonic waveguides for tailored slow light-slow sound transport. We also discuss the acousto-optic interaction in onedimensional multilayer structures and study the enhanced modulation of light by acoustic waves in a phoxonic cavity, where a consistent interpretation of the physics of the interaction can be deduced from the time evolution of the scattered optical field, under the influence of an acoustic wave.
机译:定期媒体提供了令人难忘的机会来操纵经典波(即光或声)的传输。弹性波可以通过所谓的声光相互作用散射光,该相互作用被广泛用于控制电信系统中的光,此外,光的辐射压力还可以产生弹性波。通过同时称为光子带隙结构的光子声子声波同时控制光和声,旨在增进我们的理解以及操纵声光的能力,反之亦然。特别是光和声在光子腔中的共定位可能会触发非线性吸收和发射过程,并导致增强的声光效应。在本次交流中,我们将介绍我们在设计不同光子晶体结构(如三维金属电介质结构,二维图案化硅平板和简单的一维多层膜)方面所做的努力,并为在电信光和GHz声音下运行提供最佳参数。这些结构可用于设计光子空腔,并研究局部光和声的声光相互作用,或用于定制的慢光慢声传输的光子波导。我们还讨论了一维多层结构中的声光相互作用,并研究了光子腔中声波对光的增强调制,其中可以从散射光场的时间演化中得出对相互作用物理学的一致解释,在声波的影响下。

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