2005•Unpublished venueRequires access

Material-dependent electric field enhancement of photoconductivity in gallium arsenide

Terrence Burke, Maurice Weiner, Gary Christopher Vezzoli

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Abstract

Pulsed laser measurements on as-grown and thermally processed gallium arsenide show a material dependent photoconductivity. The pulsed voltage measurements on as-grown material provide evidence of a gain mechanism. An understanding of the photocurrent gain on the nature of the bulk gallium arsenide may be useful in explaining the lock-on phenomenon and in designing high power GaAs photoconductive devices.

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What this paper is about

Pulsed laser measurements on as-grown and thermally processed gallium arsenide show a material dependent photoconductivity. The pulsed voltage measurements on as-grown material provide evidence of a gain mechanism. An understanding of the photocurrent gain on the nature of the bulk gallium arsenide may be useful in explaining the lock-on phenomenon and in designing high power GaAs photoconductive devices.

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Available abstract

Pulsed laser measurements on as-grown and thermally processed gallium arsenide show a material dependent photoconductivity. The pulsed voltage measurements on as-grown material provide evidence of a gain mechanism. An understanding of the photocurrent gain on the nature of the bulk gallium arsenide may be useful in explaining the lock-on phenomenon and in designing high power GaAs photoconductive devices.

Key concepts: Gallium arsenide, Photoconductivity, Photocurrent, Optoelectronics, Materials science, Arsenide, Gallium, Laser

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