High-temperature ultrafast polariton parametric amplification in semiconductor microcavities

被引:0
|
作者
M. Saba
C. Ciuti
J. Bloch
V. Thierry-Mieg
R. André
Le Si Dang
S. Kundermann
A. Mura
G. Bongiovanni
J. L. Staehli
B. Deveaud
机构
[1] Swiss Federal Institute of Technology Lausanne,Physics Department
[2] PH-Ecublens,Dipartimento di Fisica and Istituto Nazionale di Fisica della Materia
[3] Centre National de la Recherche Scientifique,undefined
[4] Laboratoire de Spectrometrie Physique,undefined
[5] Université J. Fourier-Grenoble,undefined
[6] Università degli Studi di Cagliari,undefined
来源
Nature | 2001年 / 414卷
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摘要
Cavity polaritons, the elementary optical excitations of semiconductor microcavities, may be understood as a superposition of excitons and cavity photons1. Owing to their composite nature, these bosonic particles have a distinct optical response, at the same time very fast and highly nonlinear. Very efficient light amplification due to polariton–polariton parametric scattering has recently been reported in semiconductor microcavities at liquid-helium temperatures2,3,4,5,6,7,8,9,10,11. Here we demonstrate polariton parametric amplification up to 120 K in GaAlAs-based microcavities and up to 220 K in CdTe-based microcavities. We show that the cut-off temperature for the amplification is ultimately determined by the binding energy of the exciton. A 5-µm-thick planar microcavity can amplify a weak light pulse more than 5,000 times. The effective gain coefficient of an equivalent homogeneous medium would be 107 cm-1. The subpicosecond duration and high efficiency of the amplification could be exploited for high-repetition all-optical microscopic switches and amplifiers. 105 polaritons occupy the same quantum state during the amplification, realizing a dynamical condensate of strongly interacting bosons which can be studied at high temperature.
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页码:731 / 735
页数:4
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