首页> 外文会议>Conference on Optoelectronic Materials and Devices >Recent advances in photonic integrated circuits
【24h】

Recent advances in photonic integrated circuits

机译:光子集成电路最近的进展

获取原文

摘要

Some recent advances in photonic integrated circuits are presented, including an InP-based monolithically integrated optical channel monitor, an arrayed waveguide grating (AWG) triplexer and a novel design of polarization insensitive AWGs. The optical channel monitor comprises a flat-field echelle grating and a slab photodetector array. The channel passband is flattened and widened without loss penalty. The shape of the slab waveguide detectors and the layer structure are optimized to obtain low crosstalk and low polarization dependence. It also has a smaller size due to the elimination of output waveguides. For triplexers in fiber access networks, a cross-order AWG design is proposed to overcome the device layout difficulty due to the wide spectral range of the wavelength channels. The spectral periodicity of the grating is utilized to reduce the free spectral range requirement. Consequently, the AWG can operate at a higher diffraction order with a smaller overall size. Finally, a novel design of a polarization insensitive arrayed waveguide grating is presented. Unlike conventional AWGs where the optical path length difference is obtained only in the arrayed channel waveguides, we design the star coupler regions according to Rowland circle construction with an oblique incidence/diffraction angle. As a result, the optical path length difference is produced in both the channel waveguides and the slab waveguide regions. By using the birefringence difference between the channel waveguide and the slab waveguide, a polarization dispersion compensated AWG is realized without any additional fabrication step.
机译:呈现了光子集成电路的一些最近进步,包括基于INP的单整体光通道监视器,阵列波导光栅(AWG)三重交通器和偏振不敏感AWG的新颖设计。光学通道监视器包括平场呼应光栅和板坯光电探测器阵列。渠道通带扁平并扩大而不会损失。优化板式波导检测器的形状和层结构以获得低串扰和低偏振依赖性。由于消除输出波导,它也具有较小的尺寸。对于光纤接入网络中的三重交换器,提出了一种跨阶AWG设计,以克服由于波长通道的宽频谱范围克服的设备布局难度。光栅的光谱周期用来减少自由谱范围要求。因此,AWG可以以更高的衍射顺序运行,整体尺寸较小。最后,提出了一种偏振不敏感串波导光栅的新颖设计。与仅在阵列通道波导中获得光路长度差的传统AWG不同,我们根据具有倾斜入射/衍射角的划线圈结构设计星形耦合器区域。结果,光路长度差异在通道波导和板状波导区域中产生。通过使用通道波导和板式波导之间的双折射差,没有任何额外的制造步骤实现偏振分散的补偿AWG。

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