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Titlebook: Nonequilibrium Carrier Dynamics in Semiconductors; Proceedings of the 1 M. Saraniti,U. Ravaioli Conference proceedings 20061st edition Spri

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书目名称Nonequilibrium Carrier Dynamics in Semiconductors
副标题Proceedings of the 1
编辑M. Saraniti,U. Ravaioli
视频video
图书封面Titlebook: Nonequilibrium Carrier Dynamics in Semiconductors; Proceedings of the 1 M. Saraniti,U. Ravaioli Conference proceedings 20061st edition Spri
描述."Nonequilibrium Carrier Dynamics in Semiconductors" is a well-established, specialist conference, held every 2 years, covering a range of topics of current interest to R&D in semiconductor physics/materials, optoelectronics, nanotechnology, quantum information processing. Papers accepted for publication are selected and peer-reviewed by members of the Program Committee during the conference to ensure both rapid and high-quality processing. ..The proceedings of this series of conferences constitute a comprehensive source of reference of the acknowledged state of the art in the field..
出版日期Conference proceedings 20061st edition
关键词Diffusion; Drift velocity; Laser; Planar; Raman spectroscopy; carrier transport; distribution; interference
版次1
doihttps://doi.org/10.1007/978-3-540-36588-4
isbn_softcover978-3-642-07169-0
isbn_ebook978-3-540-36588-4
copyrightSpringer-Verlag Berlin Heidelberg 2006
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Simulation of Entanglement Creation for Carrier-Impurity Scattering in a 2D System,e bound to a specific site by a harmonic potential. The latter can be considered as a simplified model of a shallow impurity. The dynamics of the carrier initially bound in the harmonic potential is coupled to that of the incoming electron through a screened Coulomb interaction. The entanglement is
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Optical Coherent Control of Polariton Modes in ZnSe Single-Quantum Wells,ntrol to selectively enhance or suppress the excitation of polariton resonances in a semiconductor quantum well. By use of a pair of phase-locked pulses the coherent control of polariton modes and their quantum beats are studied. The observed transients are discribed very well by a phenomenological
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Influence of Surfaces on the Pure Dephasing of Quantum Dots,b is given. We find that the proximity to a surface leaves distinct traces in the polarization and the absorption spectrum which can be traced back to the interaction of the dot with surface phonons and a reflected phonon wave packet.
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