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المؤلفون: Böttge, Christoph N.
المساهمون: Kira, Mackillo (Prof. Dr.)
مصطلحات موضوعية: Terahertz , Magnetoexziton, terahertz, magnetoexciton, Halbleiterphysik, Terahertz, Magnetoexziton, Photonic bandgap materials (for photonic crystal lasers, see 42.55.Tv), Optical waveguides and couplers (for fiber waveguides and waveguides in integrated optics, see 42.81.Qb and 42.82.Et, Optical sources and standards (for lasers, see 42.55.-f, see also 07.57.Hm in instruments), Theoretische Physik, Bulk, Zinkoxid, Physik, Physics, microcavity, Cadmiumsulfid, Nanostruktur, Mikrokavität, Heterostruktur, Longitudinal-optische Phononen, longitudinal-optical phonons, II-VI semiconductors, Photoluminescence, properties and materials, III-V semiconductors, Excitons and related phenomena, Excitons in magnetic fields, magnetoexcitons, Intrinsic properties of excitons, optical absorption spectra, Metal-insulator transitions and other electronic transitions, Halbleiter, Theorie, Quantenwell, 2013, Condensed Matter::Mesoscopic Systems and Quantum Hall Effect, Condensed Matter::Materials Science, ddc:530, Zinkoxid , Cadmiumsulfid, Bulk , Heterostruktur, Photonic bandgap materials (for photonic crystal lasers, see 42.55.Tv) -- Optical waveguides and couplers (for fiber waveguides and waveguides in integrated optics, see 42.81.Qb and 42.82.Et -- Optical sources and standards (for lasers, see 42.55.-f, see also 07.57.Hm in instruments) -- Physik -- Physics -- -- II-VI semiconductors -- Photoluminescence, properties and materials -- III-V semiconductors -- -- Excitons and related phenomena -- Excitons in magnetic fields, magnetoexcitons -- Intrinsic properties of excitons, optical absorption spectra -- Metal-insulator transitions and other electronic transitions
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::231d1725800a82cdd8b8b003d01c7a86
http://archiv.ub.uni-marburg.de/diss/z2013/0470 -
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المساهمون: Weber, Dirk Henning
الإتاحة: http://data.europeana.eu/aggregation/europeana/2048441/item_V3BYLTIYYCNSWDY6EDYMBQXD3NRGJHCI