首页> 外文会议>Conference on Physics and Simulation of Optoelectronic Devices >Simplified Gain Calculation In Erbium Doped LiNbO_3 Waveguides
【24h】

Simplified Gain Calculation In Erbium Doped LiNbO_3 Waveguides

机译:erbium掺杂Linbo_3波导的简化增益计算

获取原文

摘要

The combination of excellent electro-optical, acousto-optical and non-linear optical properties makes lithium niobate (LiNbO_3) an attractive host material for integrated optical components such as electro-optical modulators, acousto-optically tunable wavelength filters and Bragg gratings. In the last few years Erbium doped LiNbO_3 waveguide optical amplifiers (EDWA's) have attracted increasing interest. The combination of the amplifying properties of erbium with the excellent acousto-optical and electro-optical properties of the waveguide substrate LiNbO_3 allows the development of a whole class of new waveguide devices of higher functionality. The optical gain achievable in Ti:Er:LiNbO_3 waveguides by optical pumping could compensate or even over compensate these scattering, absorption and insertion losses leading to "zero loss" devices with net optical gain. The different types of lasers and amplifiers can be combined with other active and passive devices on the same substrate to form integrated optical circuits (IOC's) for a variety of applications in optical communications, sensing, signal processing and measurement techniques. The analysis of Er-doped diffused channel waveguides is, hence, required for design of amplifying integrated optical circuits in order to optimize the performance of these gain devices. The coupled differential equations, which govern the evolution of, pump power (1484nm), signal power (1485 to 1600nm) and amplified spontaneous emission, involve integrals which depend explicitly on the modal fields at the pump and signal wavelength in the diffused channel waveguide. In general, it is not possible to obtain analytical forms for the modal fields and propagation constant, hence, to obtain them various approximate or numerical methods (BPM, finite difference or finite element) are used. In this paper the modal field profiles obtained by the variational analysis are further approximated to an appropriately chosen Gaussian function, which leads to analytical forms of coupled differential equations with no integrals for the calculation of gain and ASE characteristics of the amplifying waveguide. Thus, computations are simplified and computation time is also reduced.
机译:优异的电光,声光和非线性光学性能的组合使铌酸锂(LINBO_3)成为集成光学组件的锂铌酸锂(LINBO_3),例如电光调制器,声光调谐波长过滤器和布拉格光栅。在过去的几年里,掺铒的LINBO_3波导光放大器(EDWA的)吸引了越来越兴趣。 erbium的放大性能与波导基板LiNbo_3的优异声光和电光特性的组合允许开发一类更高功能的新的波导器件。 Ti:ER中可实现的光学增益:通过光学泵浦的LINBO_3波导可以补偿或甚至通过补偿具有净光学增益的“零损耗”装置的这些散射,吸收和插入损耗。不同类型的激光器和放大器可以与同一基板上的其他主动和无源器件组合,以形成用于光通信,感测,信号处理和测量技术的各种应用的集成光电路(IOC)。因此,对ER掺杂扩散通道波导的分析是用于放大集成光电路的设计,以优化这些增益装置的性能。控制泵浦功率(1484nm),信号功率(1485至1600nm)和放大的自发发射的演变的耦合微分方程涉及积分,该积分在泵的泵和扩散通道波导中的信号波长上明确地依赖于显式。通常,不可能获得模态场和传播常数的分析形式,因此,为了获得各种近似或数值方法(BPM,有限差或有限元)。 In this paper the modal field profiles obtained by the variational analysis are further approximated to an appropriately chosen Gaussian function, which leads to analytical forms of coupled differential equations with no integrals for the calculation of gain and ASE characteristics of the amplifying waveguide.因此,简化了计算,并且还减少了计算时间。

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