By N. Shaji, H. Qin, I. Knezevic, C. Deneke (auth.), Professor M. Saraniti, Professor U. Ravaioli (eds.)
International specialists assemble each years at this validated convention to debate fresh advancements in conception and scan in non-equilibrium delivery phenomena. those advancements were the motive force at the back of the remarkable advances in semiconductor physics and units during the last few many years. initially referred to as "Hot providers in Semiconductors," the 14thconference within the sequence lined a large spectrum of conventional issues facing non-equilibrium phenomena, starting from quantum delivery to optical phenomena in mesoscopic and nano-scale constructions. specific cognizance used to be given this time to rising parts of this quickly evolving box, with many classes protecting terahertz units, excessive box shipping in nitride semiconductors, spintronics, molecular electronics, and bioelectronics functions.
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Extra info for Nonequilibrium Carrier Dynamics in Semiconductors: Proceedings of the 14th International Conference, July 25–29, 2005, Chicago, USA
Phys. D, 38, 15511555,2005. 3. Gontijo, I. Tessier, G. Livingstone, M. Galbraith, I. : J. , 80, 4027-4032, 1996. Picosecond Spin-Preserving Carrier Capture in InGaAs/GaAs Quantum Dots S. Trumm/ M. Wesseli/ H. Krenner,^ D. Schuh,^ M. Bichler, J. J. Finley,^ and M. Betz^ ^ Physik-Department E l l , Technische Universitat Miinchen, D-85747 Garching, Germany ^ Walter-Schottky-In Walter-Schottky-Institut and Physik-Department E24, Technische Universitat Miinchen, D-85747 Garching, Germany Summary. Carrier capture into self-organized InGaAs/GaAs quantum dots is studied in a femtosecond transmission experiment.
Coherent control of polariton modes in real-time resolved pulse-transmission experiments', phys. stat. sol. (b), submitted Optical Properties of Coupled Quantum DiskWaveguide Structure M. Yamaguchi, H. Tanaka, M. Yokoi, H. Takagi, and N. Sawaki Dept. of Electrical Engineering and Computer Science, Nagoya University Summary. We prepared a GaAs quantum well waveguide near which a GaAs quantum disk (QD) was located, and evaluated the transmission change in the waveguide due to the presence of the quantum disk.
Bastard, Phys. Rev. B 42, 8947 (1990) 9. H. , Phys. Rev. B 44, 10945 (1991) 10. T. R. , Phys. Rev. B 69, 235314 Influence of Surfaces on the Pure Dephasing of Quantum Dots T. Kuhn, B. Krummheuer and V. M. Axt Institut ftir Festkorpertheorie, Westfalische Wilhelms-Universitat Munster, Wilhelm-Klemm-Str. 10, 48149 Munster, Germany Summary. An analysis of the influence of confined acoustic phonons on the pure dephasing of a single quantum dot located in a half space or a free-standing slab is given.