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Coherent integrated receiver for highly linear microwave photonic links.

机译:相干集成接收器,用于高度线性的微波光子链路。

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摘要

Phase modulation can be used to improve the signal-to-noise ratio and spurfree dynamic range (SFDR) of microwave photonic links because phase modulation is not limited in input modulation swing and is inherently linear using certain electro-optic devices. Traditional interferometer-based phase demodulators have a sinusoidal response therefore a novel approach is required for achieving linear coherent detection at the receive end of a photonic link employing phase modulation. In this work, a balanced receiver with feedback to a reference tracking phase modulator was developed. With sufficient feedback loop gain, the received signal phase is closely tracked and the phase detection falls within the linear regime of the interferometer response. For stable operation at high frequency the delay of the feedback loop must be kept short, therefore a monolithic approach is required to realize a compact receiver architecture.;The monolithic photonic integrated circuit (PIC) developed here consists of a high power balanced uni-traveling-carrier photodiode (UTC-PD), a compact 2x2 multimode interference (MMI) coupler, and multi-quantum well reference phase modulators. This PIC is hybrid integrated with an electronic IC that provides transconductance amplification of the feedback signal for increased loop gain. Novel concepts such as charge compensation, partially depleted absorption, and absorption profile modification were incorporated into the design of the waveguide UTCPDs resulting in record output saturation current and linearity. Both general interference surface ridge (SR) MMI couplers and restricted interference deep ridge (DR) MMI couplers were explored, the latter for reducing the loop delay. Current injection tuning was incorporated into the MMI couplers for fine tuning the output power splitting ratio. The quantum well design of the reference phase modulators was optimized for realizing low Vpi, low insertion loss, low absorption modulation, and improved linearity. Second generation integrated receivers incorporated quantum well intermixing (QWI) to eliminate the tradeoff between phase modulation efficiency and passive loss.;Using a first generation SR coherent receiver in a link experiment, the demonstrated SFDR for signal frequencies of 300 MHz, 500 MHz, and 1 GHz was 125 dB˙Hz2/3, 121 dB˙Hz2/3, and 113 dB˙Hz2/3 respectively. Using a second generation DR coherent receiver with QWI for low passive loss, and more efficient phase modulators, the projected SFDR was improved by 6 dB.
机译:相位调制可用于改善微波光子链路的信噪比和无杂散动态范围(SFDR),因为相位调制不受输入调制摆幅的限制,并且使用某些电光设备固有地呈线性。传统的基于干涉仪的相位解调器具有正弦响应,因此需要一种新颖的方法来在采用相位调制的光子链路的接收端实现线性相干检测。在这项工作中,开发了一种具有对参考跟踪相位调制器的反馈的平衡接收器。有了足够的反馈环路增益,就可以密切跟踪接收信号的相位,并且相位检测会落在干涉仪响应的线性范围内。为了在高频下稳定运行,必须使反馈环路的延迟保持较短,因此需要采用单片方法来实现紧凑的接收器体系结构。此处开发的单片光子集成电路(PIC)由高功率平衡单路旅行电路组成载流子光电二极管(UTC-PD),紧凑型2x2多模干扰(MMI)耦合器和多量子阱参考相位调制器。该PIC与电子IC混合集成,该IC提供反馈信号的跨导放大以增加环路增益。诸如电荷补偿,部分耗尽的吸收和吸收轮廓修改之类的新颖概念已纳入波导UTCPD的设计中,从而产生了创纪录的输出饱和电流和线性度。研究了通用干扰表面脊(SR)MMI耦合器和受限干扰深脊(DR)MMI耦合器,后者用于减少环路延迟。 MMI耦合器中集成了电流注入调整功能,用于微调输出功率分配比。对参考相位调制器的量子阱设计进行了优化,以实现低Vpi,低插入损耗,低吸收调制和改善的线性度。第二代集成接收器结合了量子阱混合(QWI),消除了相位调制效率和无源损耗之间的折衷;在链路实验中使用第一代SR相干接收器,论证了SFDR在300 MHz,500 MHz和1 GHz分别为125 dB点Hz2 / 3、121 dB点Hz2 / 3和113 dB点Hz2 / 3。使用具有QWI的第二代DR相干接收机以降低无源损耗,并使用更高效的相位调制器,可将SFDR预测提高6 dB。

著录项

  • 作者

    Klamkin, Jonathan.;

  • 作者单位

    University of California, Santa Barbara.;

  • 授予单位 University of California, Santa Barbara.;
  • 学科 Engineering Electronics and Electrical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 278 p.
  • 总页数 278
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;工程材料学;
  • 关键词

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