首页> 外文期刊>Photonics Journal, IEEE >Engineering Adiabaticity for Efficient Design of Photonic Lanterns
【24h】

Engineering Adiabaticity for Efficient Design of Photonic Lanterns

机译:高效设计光子灯具的工程绝热

获取原文
获取原文并翻译 | 示例
           

摘要

We present a comprehensive systematic framework for optimizing adiabaticity in photonic lanterns. The framework considers the effects of both the cross-sectional and longitudinal device parameters on adiabaticity. Photonic lanterns are adiabatic photonic devices and are therefore known to have large device lengths. A Shortcuts-to-adiabaticity (STA) protocol is employed to optimize the adiabatic taper profile in all-fibre photonic lanterns. The method tailors adiabatic propagation of light in the system by appropriately correcting the local slope of the taper profile. A quantifiable measure of adiabaticity is established, based on the adiabaticity criterion. This measure relates inversely to the device length and is a useful parameter in taper optimization. We apply the protocol to reported photonic lantern devices to obtain optimal adiabatic taper profiles having shorter device lengths. The optimized taper profile refers to that taper profile which corresponds to the minimum local inter-modal coupling at every point along the quasi-adiabatic transition for a given device length. While optimizing the adiabatic transition by minimizing inter-modal coupling is the basic aim of this work, length optimization is an extremely useful by-product. This procedure can be used to either reduce the device length or to reduce the mode-coupling losses or both. This study analyses reported three and six-core mode selective photonic lanterns as examples. We also discuss ways to make the optimum profiles practically realizable.
机译:我们展示了一个全面的系统框架,用于优化光子灯笼中的绝热性。该框架考虑了横截面和纵向装置参数对绝热性的影响。光子灯是绝热光子器件,因此已知具有大的装置长度。采用捷径到绝热性(STA)方案来优化全纤维光子灯中的绝热锥形曲线。该方法通过适当地校正锥形分布的局部斜率来裁缝光在系统中的绝热传播。基于绝热标准,建立了可量化的绝热措施。该测量与设备长度相反,是锥度优化中的有用参数。我们将协议应用于报告的光子灯具设备,以获得具有较短装置长度的最佳绝热锥形型材。优化的锥形分布是指逐渐变锥形轮廓,其对应于沿着给定装置长度的准防冻转换的每个点处的最小局部间模耦合。在通过最小化模态耦合来优化绝热转换是本工作的基本目的,但长度优化是一个非常有用的副产物。该过程可用于减少设备长度或减少模式耦合损耗或两者。该研究分析了三个和六核模式选择性光子灯作为示例。我们还讨论了使最佳配置文件实际上可实现的方法。

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