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Monolithic germanium/silicon avalanche photodiodes with 340 GHz gain–bandwidth product
by
Chen, Hui-Wen
, Zaoui, Wissem Sfar
, Paniccia, Mario J.
, Sarid, Gadi
, Kang, Yimin
, McIntosh, Dion C.
, Liu, Han-Din
, Zadka, Moshe
, Zheng, Xiaoguang
, Pauchard, Alexandre
, Bowers, John E.
, Campbell, Joe C.
, Morse, Mike
, Litski, Stas
, Kuo, Ying-Hao
, Beling, Andreas
in
Applied and Technical Physics
/ Applied sciences
/ Bandwidths
/ Electronics
/ Exact sciences and technology
/ Fundamental areas of phenomenology (including applications)
/ Germanium
/ letter
/ Light sources
/ Optical elements, devices, and systems
/ Optical processors, correlators, and modulators
/ Optics
/ Optoelectronic devices
/ Photonics
/ Physics
/ Physics and Astronomy
/ Quantum Physics
/ Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
/ Sensors
/ Silicon
2009
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Monolithic germanium/silicon avalanche photodiodes with 340 GHz gain–bandwidth product
by
Chen, Hui-Wen
, Zaoui, Wissem Sfar
, Paniccia, Mario J.
, Sarid, Gadi
, Kang, Yimin
, McIntosh, Dion C.
, Liu, Han-Din
, Zadka, Moshe
, Zheng, Xiaoguang
, Pauchard, Alexandre
, Bowers, John E.
, Campbell, Joe C.
, Morse, Mike
, Litski, Stas
, Kuo, Ying-Hao
, Beling, Andreas
in
Applied and Technical Physics
/ Applied sciences
/ Bandwidths
/ Electronics
/ Exact sciences and technology
/ Fundamental areas of phenomenology (including applications)
/ Germanium
/ letter
/ Light sources
/ Optical elements, devices, and systems
/ Optical processors, correlators, and modulators
/ Optics
/ Optoelectronic devices
/ Photonics
/ Physics
/ Physics and Astronomy
/ Quantum Physics
/ Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
/ Sensors
/ Silicon
2009
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Monolithic germanium/silicon avalanche photodiodes with 340 GHz gain–bandwidth product
by
Chen, Hui-Wen
, Zaoui, Wissem Sfar
, Paniccia, Mario J.
, Sarid, Gadi
, Kang, Yimin
, McIntosh, Dion C.
, Liu, Han-Din
, Zadka, Moshe
, Zheng, Xiaoguang
, Pauchard, Alexandre
, Bowers, John E.
, Campbell, Joe C.
, Morse, Mike
, Litski, Stas
, Kuo, Ying-Hao
, Beling, Andreas
in
Applied and Technical Physics
/ Applied sciences
/ Bandwidths
/ Electronics
/ Exact sciences and technology
/ Fundamental areas of phenomenology (including applications)
/ Germanium
/ letter
/ Light sources
/ Optical elements, devices, and systems
/ Optical processors, correlators, and modulators
/ Optics
/ Optoelectronic devices
/ Photonics
/ Physics
/ Physics and Astronomy
/ Quantum Physics
/ Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
/ Sensors
/ Silicon
2009
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Monolithic germanium/silicon avalanche photodiodes with 340 GHz gain–bandwidth product
Journal Article
Monolithic germanium/silicon avalanche photodiodes with 340 GHz gain–bandwidth product
2009
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Overview
Significant progress has been made recently in demonstrating that silicon photonics is a promising technology for low-cost optical detectors, modulators and light sources
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. It has often been assumed, however, that their performance is inferior to InP-based devices. Although this is true in most cases, one of the exceptions is the area of avalanche photodetectors, where silicon's material properties allow for high gain with less excess noise than InP-based avalanche photodetectors and a theoretical sensitivity improvement of 3 dB or more. Here, we report a monolithically grown germanium/silicon avalanche photodetector with a gain–bandwidth product of 340 GHz, a
k
eff
of 0.09 and a sensitivity of −28 dB m at 10 Gb s
−1
. This is the highest reported gain–bandwidth product for any avalanche photodetector operating at 1,300 nm and a sensitivity that is equivalent to mature, commercially available III–V compound avalanche photodetectors. This work paves the way for the future development of low-cost, CMOS-based germanium/silicon avalanche photodetectors operating at data rates of 40 Gb s
−1
or higher.
A monolithically grown Ge/Si avalanche photodetectors (APD) with a gain–bandwidth product of 340 GHz, the highest value for any APDs operating at 1,300 nm, and a sensitivity equivalent to commercially available III-V compound APDs is reported. The excellent performance paves the way to achieving low-cost, CMOS-based, Ge/Si APDs operating at data rates of 40 Gb s
−1
or higher, where the performance of III-V APDs is severely limited.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
/ Exact sciences and technology
/ Fundamental areas of phenomenology (including applications)
/ letter
/ Optical elements, devices, and systems
/ Optical processors, correlators, and modulators
/ Optics
/ Physics
/ Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
/ Sensors
/ Silicon
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