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Physical Review Letters|December 18, 2002
Capacitive-coupling-enhanced switching gain in an electron y-branch switchS Reitzenstein, L Worschech, P Hartmann, et al.Nanotechnology|December 14, 2011
Density and size control of InP/GaInP quantum dots on GaAs substrate grown by gas source molecular beam epitaxyR Rödel, A Bauer, S Kremling, et al.Physical Review Letters|March 10, 2012
Bloch-wave engineering of quantum dot micropillars for cavity quantum electrodynamics experimentsM Lermer, N Gregersen, F Dunzer, et al.Nanotechnology|February 17, 2010
Time-resolved photoluminescence investigations on HfO2-capped InP nanowiresS Münch, S Reitzenstein, M Borgström, et al.Optics Express|August 6, 2009
The role of optical excitation power on the emission spectra of a strongly coupled quantum dot-micropillar systemS Münch, S Reitzenstein, P Franeck, et al.Nanotechnology|October 6, 2009
Single site-controlled In(Ga)As/GaAs quantum dots: growth, properties and device integrationC Schneider, A Huggenberger, T Sünner, et al.Physical Review Letters|October 2, 2009
Control of the strong light-matter interaction between an elongated In_{0.3}Ga_{0.7}As quantum dot and a micropillar cavity using external magnetic fieldsS Reitzenstein, S Münch, P Franeck, et al.Nanotechnology|October 16, 2010
Atomic scale interface engineering for strain compensated epitaxially grown InAs/AlSb superlatticesA Bauer, M Dallner, A Herrmann, et al.Optics Express|June 11, 2008
Single quantum dot controlled lasing effects in high-Q micropillar cavitiesS Reitzenstein, C Böckler, A Bazhenov, et al.Advanced Materials (Deerfield Beach, Fla.)|October 10, 2012
On-chip quantum optics with quantum dot microcavitiesE Stock, F Albert, C Hopfmann, et al.Pageof 47