Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group

Picosecond investigations of the photorefractive effect in GaAs

Not Accessible

Your library or personal account may give you access

Abstract

We report the first observation of the photorefractive effect on time scales of <50 ps in a sample of semi-insulating, undoped GaAs. In this crystal, which is from the same boule as a sample previously investigated with a cw 1.06- μm laser,1 we observe beam coupling between two equal Intensity beams with the direction of energy transfer dependent on the orientation of the crystal, an unambiguous signature of the photorefractive effect, The magnitude of the energy transfer is consistent with theoretical calculations based on the set of equations (rate equations, continuity, and Poisson's equation) proposed by Vinetskii and Kukhtarev.2 On subnanosecond time scales the space charge grating that is responsible for the photorefractive effect is caused by charge separation between conduction band electrons and ionized traps. Unlike the photorefractive effect in GaAs on time scales greater than the electron recombination time in which the internal space charge field is limited by the trapped charge density,1 in GaAs on subnanosecond time scales recombination is unimportant and the space charge is limited by the donor number density (the number density of electrons available for photoionization).

© 1986 Optical Society of America

PDF Article
More Like This
Picosecond Photorefractive Beam Coupling In GaAs

Arthur L. Smirl, George C. Valley, Marvin B. Klein, Klaus Bohnert, and Thomas F. Boggess
MB3 International Conference on Ultrafast Phenomena (UP) 1986

Comparison of Picosecond Photorefractive Effects in BaTiO3 and GaAs

Arthur L. Smirl, George C. Valley, K. Bohnert, and Thomas F. Boggess
ThA1 Photorefractive Materials (PR) 1987

Picosecond optical beam coupling in photorefractive GaAs

George C. Valley, Arthur L. Smirl, Klaus Bohnert, and Thomas F. Boggess
FA4 Photonic Switching (PS) 1987

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.