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Submicron modulation-doped field-effect transistor/metalsemiconductor- metal-based optoelectrnic integrated circuit receiver fabricated by direct-write electron-beam lithography

机译:通过直接写电子束光刻技术制备的亚微米调制掺杂场效应晶体管/金属半导体基光电子集成电路接收器

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摘要

[[abstract]]An all direct‐write electron‐beam fabrication process has been developed for the fabrication of monolithic optoelectronic integrated circuits (OEICs). Various electron‐beam resist technologies are investigated including image reversed AZ5214, PMMA/P[MMA−MAA] bilayer, and PMMA/P[MMA−MAA]/PMMA trilayer. A novel single‐step air‐bridge formation process utilizing selective development is described. These processes are demonstrated in the fabrication of a 0.85‐μm sensitive OEIC receiver comprised of a metal–semiconductor–metal (MSM) detector integrated with a submicron GaAs/InGaAs/AlGaAs pseudomorphic modulation‐doped field‐effect transistor based transimpedance amplifier. A 3‐dB transimpedance bandwidth of 5.6 GHz and a transimpedance bandwidth product of 4.8 THz Ω are measured for the amplifier. Discrete high‐resolution MSM photodetectors with finger/gap spacings ranging from 0.1 to 1.0 μm have been fabricated and characterized.
机译:[[摘要]]已经开发了用于制造单片光电集成电路(OEIC)的所有直接写入电子束的制造工艺。研究了各种电子束抗蚀剂技术,包括反像AZ5214,PMMA / P [MMA-MAA]双层和PMMA / P [MMA-MAA] / PMMA三层。描述了一种利用选择性显影的新型单步气桥形成过程。在制造0.85μm敏感的OEIC接收器时证明了这些过程,该接收器由金属-半导体-金属(MSM)检测器组成,该检测器集成了基于亚微GaAs / InGaAs / AlGaAs拟态调制掺杂的场效应晶体管的跨阻放大器。测量放大器的3dB跨阻带宽5.6 GHz和跨阻带宽乘积4.8 THzΩ。已经制造并表征了手指/间隙间距在0.1到1.0μm之间的离散高分辨率MSM光电探测器。

著录项

  • 作者

    A. Ketterson;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 [[iso]]en
  • 中图分类

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