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Ge0.975Sn0.025 320 × 256 imager chip for 1.6-1.9 μm infrared vision

  • Chiao Chang
  • , Hui Li
  • , Chien Te Ku
  • , Shih Guo Yang
  • , Hung Hsiang Cheng
  • , Joshua Hendrickson
  • , Richard A. Soref
  • , Greg Sun
  • National Taiwan University
  • Chung-shan Institute of Science and Technology Taiwan
  • Air Force Research Laboratory
  • University of Massachusetts Boston

Research output: Contribution to journalArticlepeer-review

Abstract

We report the experimental fabrication and testing of a GeSn-based 320 × 256 image sensor focal plane array operating at -15°C in the 1.6-C1.9 μm spectral range. For image readout, the 2D pixel array of Ge/GeSn/Ge p-i-n heterophotodiodes was flip-chip bonded to a customized silicon CMOS readout integrated circuit. The resulting camera chip was operated using back-side illumination. Successful imaging of a tungsten-filament light bulb was attained with observation of gray-scale "hot spot" infrared features not seen using a visible-light camera. The Ge wafer used in the present imaging array will be replaced in future tests by a germanium-on-silicon wafer offering thin-film Ge upon Si or on SiO2/Si. This is expected to increase the infrared responsivity obtained in back-side illumination, and it will allow an imager in a Si-based foundry to be manufactured. Our experiments are a significant step toward the realization of group IV near-mid-infrared imaging systems, such as those for night vision.

Original languageEnglish
Pages (from-to)10170-10173
Number of pages4
JournalApplied Optics
Volume55
Issue number36
DOIs
StatePublished - Dec 20 2016

ASJC Scopus Subject Areas

  • Atomic and Molecular Physics, and Optics
  • Engineering (miscellaneous)
  • Electrical and Electronic Engineering

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