Quantum oscillations of photocurrents in HgTe quantum wells with Dirac and parabolic dispersions

We report on the observation of magneto-oscillations of terahertz radiation induced photocurrent in HgTe/HgCdTe quantum wells of different widths, which are characterized by a Dirac-like, inverted, and normal parabolic band structure. The photocurrent data are accompanied by measurements of photores...

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Veröffentlicht in:Physical review. B, Condensed matter and materials physics Condensed matter and materials physics, 2014-11, Vol.90 (20), Article 205415
Hauptverfasser: Zoth, C., Olbrich, P., Vierling, P., Dantscher, K.-M., Bel'kov, V. V., Semina, M. A., Glazov, M. M., Golub, L. E., Kozlov, D. A., Kvon, Z. D., Mikhailov, N. N., Dvoretsky, S. A., Ganichev, S. D.
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Sprache:eng
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Zusammenfassung:We report on the observation of magneto-oscillations of terahertz radiation induced photocurrent in HgTe/HgCdTe quantum wells of different widths, which are characterized by a Dirac-like, inverted, and normal parabolic band structure. The photocurrent data are accompanied by measurements of photoresistance (photoconductivity), radiation transmission, as well as magneto transport. We develop a microscopic model of a cyclotron-resonance assisted photogalvanic effect, which describes main experimental findings. We demonstrate that the quantum oscillations of the photocurrent are caused by the crossing of Fermi level by Landau levels resulting in the oscillations of spin polarization and electron mobilities in spin subbands. Theory explains a photocurrent direction reversal with the variation of magnetic field observed in experiment. We describe the photoconductivity oscillations related with the thermal suppression of the Shubnikov-de Haas effect.
ISSN:1098-0121
1550-235X
DOI:10.1103/PhysRevB.90.205415