Polaronic effects in one-dimensional quantum antidot arrays |
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Authors: | B. S. Kandemir |
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Affiliation: | (1) Department of Physics, Faculty of Sciences, Ankara University, 06100 Tandoğan, Ankara, Turkey |
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Abstract: | We study the effect of polaronic corrections arising from theelectron-longitudinal optical phonon interaction on the energyspectrum of a two-dimensional electron system with a one-dimensionalperiodic antidot array geometry created by a weak electrostaticmodulation potential, and subjected to a weak magnetic fieldmodulation as well as a uniform strong perpendicular staticmagnetic field. To incorporate the effects of electron-phononinteractions within the framework of Fröhlich polaron theory, wefirst apply a displaced-oscillator type unitary transformation todiagonalise the relevant Fröhlich Hamiltonian, and we thendetermine the parameters of this transformation together with theparameter included in the electronic trial wave function . On thebasis of this technique, it has been shown that the polaroniccorrections have non-negligible effects on the electronic spectrumof a two-dimensional electron system with a quantum antidot array,since switching such an interaction results in shifting thedegeneracy restoring points of Landau levels wherein the flatbandcondition is fulfilled, thus suppressing the Weiss oscillations. |
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Keywords: | KeywordHeading" >PACS 68.65.Hb Quantum dots (patterned in quantum wells) 81.07.Ta Quantum dots 85.35.Be Quantum well devices (quantum dots, quantum wires, etc.) 73.21.-b Electron states and collective excitations in multilayers, quantum wells, mesoscopic, and nanoscale systems |
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