1989•IEEE Transactions on Electron DevicesRequires access

Si/SiGe heterojunction bipolar transistor made by molecular-beam epitaxy

P. Narozny, H. Dämbkes, Horst Kibbel, Erich Kasper

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Abstract

Si/SiGe heterostructure bipolar transistors (HBTs) were fabricated and compared to Si homojunction transistors with similar doping levels. Low-temperature Si-MBE (molecular-beam epitaxy) was used to form the heterojunction and the homojunction layer sequences. A wet chemical selective etching technique was used to contact the thin (80 nm) base layer of the heterojunction transistor. A peak current gain of 200 to 400 was measured for the heterostructure devices, compared to a gain of two for the homojunction structure. The current gain collector current dependence of the heterostructure device could be due to surface recombination effects.>

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What this paper is about

Si/SiGe heterostructure bipolar transistors (HBTs) were fabricated and compared to Si homojunction transistors with similar doping levels. Low-temperature Si-MBE (molecular-beam epitaxy) was used to form the heterojunction and the homojunction layer sequences. A wet chemical selective etching technique was used to contact the thin (80 nm) base layer of the heterojunction transistor. A peak current gain of 200 to 400 was measured for the heterostructure devices, compared to a gain of two for the homojunction structure. The current gain collector current dependence of the heterostructure device could be due to surface recombination effects.>

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Available abstract

Si/SiGe heterostructure bipolar transistors (HBTs) were fabricated and compared to Si homojunction transistors with similar doping levels. Low-temperature Si-MBE (molecular-beam epitaxy) was used to form the heterojunction and the homojunction layer sequences. A wet chemical selective etching technique was used to contact the thin (80 nm) base layer of the heterojunction transistor. A peak current gain of 200 to 400 was measured for the heterostructure devices, compared to a gain of two for the homojunction structure. The current gain collector current dependence of the heterostructure device could be due to surface recombination effects.>

Key concepts: Homojunction, Heterojunction, Optoelectronics, Molecular beam epitaxy, Bipolar junction transistor, Materials science, Heterojunction bipolar transistor, Heterostructure-emitter bipolar transistor

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