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Integrated Photonic Comb Generation: Applications in Coherent Communication and Sensing.

机译:集成光子梳产生:相干通信和传感中的应用。

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摘要

Integrated photonics combines many optical components including lasers, modulators, waveguides, and detectors in close proximity via homogeneous (monolithic) or heterogeneous (using multiple materials) integration. This improves stability for interferometers and lasers, reduces the occurrence of unwanted reflections, and it avoids coupling losses between different components as they are on the same chip. Thus, less power is needed to compensate for these added losses, and less heat needs to be removed due to these power savings. In addition, integration allows the many components that comprise a system to be fabricated together, thereby reducing the cost per system and allowing rapid scaling in production throughput.;Integrated optical combs have many applications including: metrology, THz frequency generation, arbitrary waveform generation, optical clocks, photonic analog-to-digital converters, sensing (imaging), spectroscopy, and data communication. A comb is a set of optical sources evenly spaced in frequency. Several methods of comb generation including mode-locking and optical parametric oscillation produce phase-matched optical outputs with a fixed phase relationship between the frequency lines. When the absolute frequency of a single comb line is stabilized along with the frequency spacing between comb lines, absolute phase and frequency precision can be achieved over the entire comb bandwidth. This functionality provides tremendous benefits to many applications such as coherent communication and optical sensing.;The goals for this work were achieving a broad comb bandwidth and noise reduction, i.e., frequency and phase stability. Integrated mode-locked lasers on the InGaAsP/InP material platform were chosen, as they could be monolithically integrated with the wide range of highly functional and versatile photonic integrated circuits (PICs) previously demonstrated on this platform at UCSB. Gain flattening filters were implemented to increase the comb bandwidths to 2.5 THz. Active mode-locking with an RF source was used to precisely set the frequency spacing between comb lines with better than 10 Hz accuracy. An integrated optical phase-locked loop (OPLL) for the comb was designed, built, and tested. The OPLL fixed a single comb line to a stable single linewidth laser, demonstrating a ∼430 Hz FWHM optical linewidth on the locked comb line and 20º RMS phase deviation between the comb and optical reference. The free-running linewidth is 50–100 MHz, demonstrating over 50 dB improvement in optical linewidth via locking. An integrated tunable laser (SG-DBR) with an OPLL was phase-locked to a comb source with a fixed offset frequency, thus showing the potential for using a comb with SG-DBRs as a compact frequency synthesizer.
机译:集成光子学通过均质(单片)或异质(使用多种材料)集成,紧密结合了许多光学组件,包括激光器,调制器,波导和检测器。这提高了干涉仪和激光器的稳定性,减少了不必要的反射的发生,并且避免了不同组件在同一芯片上时的耦合损耗。因此,需要较少的功率来补偿这些增加的损失,并且由于这些功率节省而需要去除的热量也较少。此外,集成允许将组成系统的许多组件组装在一起,从而降低了每个系统的成本并实现了生产吞吐量的快速扩展。集成光学梳具有许多应用,包括:度量,太赫兹频率生成,任意波形生成,光学时钟,光子模数转换器,传感(成像),光谱学和数据通信。梳子是一组频率均匀间隔的光源。包括锁模和光学参量振荡在内的几种梳状波产生方法会在频率线之间产生具有固定相位关系的相位匹配光输出。当单个梳状线的绝对频率以及梳状线之间的频率间隔稳定时,可以在整个梳状带宽上实现绝对相位和频率精度。此功能为相干通信和光学传感等许多应用带来了巨大好处。;这项工作的目标是实现宽梳齿带宽和降低噪声,即频率和相位稳定性。选择了InGaAsP / InP材料平台上的集成锁模激光器,因为它们可以与先前在该平台上在UCSB上展示的各种功能强大的通用光子集成电路(PIC)进行单片集成。实施增益平坦滤波器以将梳状带宽增加到2.5 THz。具有射频源的主动锁模技术可用于精确设置梳状线之间的频率间隔,精度优于10 Hz。设计,制造和测试了用于梳子的集成光学锁相环(OPLL)。 OPLL将单根梳状线固定到稳定的单线宽激光器上,在锁定的梳状线上显示了约430 Hz FWHM光学线宽,并且梳状结构和光学参考之间的相位偏移为20ºRMS。自由运行的线宽为50–100 MHz,这表明通过锁定可以将光线宽提高50 dB以上。具有OPLL的集成可调激光器(SG-DBR)被锁相到具有固定偏移频率的梳状光源,因此显示了将SG-DBRs梳状结构用作紧凑型频率合成器的潜力。

著录项

  • 作者

    Parker, John S.;

  • 作者单位

    University of California, Santa Barbara.;

  • 授予单位 University of California, Santa Barbara.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 274 p.
  • 总页数 274
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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