Resonant magnetopolaron effect in a high electron density quantum well in a tilted magnetic field
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KLIMIN, Serghei, FOMIN, Vladimir, DEVREESE, Josef T.. Resonant magnetopolaron effect in a high electron density quantum well in a tilted magnetic field. In: Physical Review B - Condensed Matter and Materials Physics, 2008, vol. 77, p. 0. ISSN 1098-0121. DOI: https://doi.org/10.1103/PhysRevB.77.205311
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Physical Review B - Condensed Matter and Materials Physics
Volumul 77 / 2008 / ISSN 1098-0121 /ISSNe 1550-235X

Resonant magnetopolaron effect in a high electron density quantum well in a tilted magnetic field

DOI: https://doi.org/10.1103/PhysRevB.77.205311

Pag. 0-0

Klimin Serghei12, Fomin Vladimir123, Devreese Josef T.13
 
1 University of Antwerp,
2 Moldova State University,
3 Eindhoven University of Technology
 
Disponibil în IBN: 6 iulie 2023


Rezumat

The cyclotron resonance (CR) spectra are calculated for a high electron density GaAs/AlAs quantum well in a tilted magnetic field. The CR peaks are split due to (i) the resonant magnetopolaron effect and (ii) the anticrossing of the CR mode and the plasmon-phonon intersubband modes. The derived CR peak positions and amplitudes are in good agreement with experiment. It is shown that the experimental CR spectra find an adequate explanation within Fröhlich's polaron concept. 

Cuvinte-cheie
Cyclotron resonance, Landau levels, Gallium Arsenides

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<title xml:lang='en'>Resonant magnetopolaron effect in a high electron density quantum well in a tilted magnetic field</title>
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<publicationYear>2008</publicationYear>
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<subject>Cyclotron resonance</subject>
<subject>Landau levels</subject>
<subject>Gallium Arsenides</subject>
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<description xml:lang='en' descriptionType='Abstract'><p>The cyclotron resonance (CR) spectra are calculated for a high electron density GaAs/AlAs quantum well in a tilted magnetic field. The CR peaks are split due to (i) the resonant magnetopolaron effect and (ii) the anticrossing of the CR mode and the plasmon-phonon intersubband modes. The derived CR peak positions and amplitudes are in good agreement with experiment. It is shown that the experimental CR spectra find an adequate explanation within Fr&ouml;hlich&#39;s polaron concept.&nbsp;</p></description>
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