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Recent Advances and Future Prospects in High-Speed and High-Saturation-Current Photodetectors

机译:高速和高饱和电流光电探测器的最新进展和未来展望

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High power photodetectors have a made remarkable progress in performance over the last few years with prospective application in high-bit-rate digital receivers with reduced complexity, CATV, analog-to-digital converter, high power RF distribution and optoelectronic generation of high power microwaves and millimeter-waves in RF photonic systems. An in depth understanding of the failure mechanism and novel techniques in thermal management have dramatically improved the power handling capability of the high power photodiodes. In order to increase the output RF power of the photodiodes, several groups have developed surface-illuminated, waveguide, traveling-wave, uni-travelling carrier, parallel fed traveling wave with MMI couples and distributed photodetector arrays. An impressive improvement in link gam, noise figure, and spurious free dynamic range (SFDR) of externally modulated links has been achieved by several groups. The realization of high power balanced photodetectors has helped suppress the relative intensity noise (RIN) of the laser source and the amplified spontaneous emission noise (ASE) from erbium-doped fiber amplifiers (EDFA) reaching the level of quantum noise floor. This paper will briefly discuss various approaches that different research groups have undertaken and will discuss our recent advances in power handling capability and reliability analysis of velocity-matched distributed photodetectors (VMDP) and balanced photodetectors for RF photonic links.
机译:在过去的几年中,高功率光电探测器在性能上取得了显着进步,并有望应用于复杂性降低的高比特率数字接收机,CATV,模数转换器,高功率射频分配和高功率微波的光电产生和射频光子系统中的毫米波。对故障机理的深入了解和热管理中的新技术极大地提高了高功率光电二极管的功率处理能力。为了增加光电二极管的输出RF功率,几个小组开发了表面照明的,波导,行波,单行进载波,带有MMI耦合的并行馈送行波和分布式光电探测器阵列。多个小组已实现了链路调制,噪声系数和外部调制链路的无杂散动态范围(SFDR)的显着改善。高功率平衡光电探测器的实现有助于抑制激光源的相对强度噪声(RIN)和来自掺do光纤放大器(EDFA)的放大的自发发射噪声(ASE)达到量子噪声本底水平。本文将简要讨论不同研究小组采取的各种方法,并讨论我们在速度匹配分布式光电探测器(VMDP)和用于射频光子链路的平衡光电探测器的功率处理能力和可靠性分析方面的最新进展。

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