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Ge-on-Si photodetector with novel metallization schemes for on-chip optical interconnect

Authors
Yun, M.Cho, S.Kang, S.-K.Jung, S.Park, B.-G.
Issue Date
2015
Publisher
Institute of Electrical and Electronics Engineers Inc.
Keywords
back-end-of-the-line; external quantum efficiency; Ge-on-Si photodetector; green technology; heterojunction pn diode; on-chip optical interconnect; optical responsivity; short-wavelength infrared; silicon-on-insulator; very-large-scale integration
Citation
Proceedings of the International Symposium on Consumer Electronics, ISCE, v.2015-August
Journal Title
Proceedings of the International Symposium on Consumer Electronics, ISCE
Volume
2015-August
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/11047
DOI
10.1109/ISCE.2015.7177834
ISSN
0000-0000
Abstract
In this work, fabricated 1550-nm short-wavelength infrared (SWIR) Ge-on-Si photodetectors coupled with a Si waveguide on silicon-on-insulator (SOI) for on-chip optical interconnect as an energy-efficient green technology for next-generation very-large-scale integration (VLSI) systems are characterized. Here, a particular emphasis is put on the back-end-of-the-line (BEOL) technology in device design. Comparison study on the effects of interconnection geometry on the electrical and optical DC characteristics of the device is made. Compared with a reference device with bulk contacts, device with holey contacts demonstrated an increased optical responsivity. Further, device with holey contacts on two metal layers showed the highest photocurrent. Also, dependence of forward and reverse currents in the heterojunction pn diode on effective contact area is empirically studied. As a result, it is found that external quantum efficiency (EQE) can be significantly improved by engineering the geometry of metal interconnect in the Ge-on-Si photodetector without being affected by reduction in the effective contact area. © 2015 IEEE.
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