首页> 外文会议>Conference on Integrated Photonics Platforms: Fundamental Research, Manufacturing and Applications >Integrated electro-optic tunable power splitters based on microring resonators having interleaved PN junctions
【24h】

Integrated electro-optic tunable power splitters based on microring resonators having interleaved PN junctions

机译:基于具有交错PN结的微环谐振器的集成电光可调功率分配器

获取原文

摘要

An integrated high-speed novel electro-optic power splitter based on interleaved PN junction in a silicon microring resonator has been proposed, which can be used as an ultra-fast, dynamically tunable optical power splitter to efficiently distribute power between various optical stations in Network-on-chip (NoC). The main working principle behind such a device is that we can change the refractive index of the PN junction waveguide under an application of an external reverse bias voltage, enabling the resonator to work as a power splitter. The interleaved PN junction waveguides utilizing the features of greater overlap of the optical waveguide mode with the depletion layer compared to normal PN junction, provide the opportunity to maximize the change in refractive index with minimum applied reverse bias voltage. The carriers (electrons and holes) are depleted near to the p region and n region interface on applying a reverse bias voltage. The depletion region increases with the applied reverse bias voltage, which enhances more interaction with the propagating light. To evaluate the performance of the splitter, we have calculated the change in the effective refractive index and the optical loss due to the free carrier concentrations. The proposed optical power splitter is capable of tuning the power splitting ratio from 0.15 to 7.82, which is a very wide range of tunability with low power consumption (35 mW) and low external voltage (0-3.5 V). We have proposed the use of a high-speed Digital to Analog converter (DAC) to apply an external reverse bias voltage to the interleaved PN junction waveguide.
机译:提出了一种在硅微环谐振器中基于交错式PN结的集成高速新型电光功率分配器,它可以用作超快速,动态可调的光功率分配器,以有效地在网络中的各个光站之间分配功率片上(NoC)。这种器件的主要工作原理是,我们可以在施加外部反向偏置电压的情况下改变PN结波导的折射率,从而使谐振器能够用作功率分配器。相较于普通PN结,交错的PN结波导利用了光波导模式与耗尽层的更大重叠特性,提供了在最小施加反向偏置电压的情况下最大程度地改变折射率的机会。在施加反向偏置电压时,载流子(电子和空穴)在p区和n区界面附近耗尽。耗尽区随着施加的反向偏置电压而增加,从而增强了与传播光的更多相互作用。为了评估分光器的性能,我们已经计算了有效折射率的变化以及由于自由载流子浓度引起的光损耗。所提出的光功率分配器能够将功率分配比从0.15调节至7.82,这是可调性范围非常广的器件,具有低功耗(35 mW)和低外部电压(0-3.5 V)。我们建议使用高速数模转换器(DAC)向交织的PN结波导施加外部反向偏置电压。

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