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Resonant spin amplification of resident electrons in CdTe/(Cd,Mg)Te quantum wells subject to tilted magnetic fields. / Zhukov, E. A.; Yugov, O. A.; Yugova, I. A.; Yakovlev, D. R.; Karczewski, G.; Wojtowicz, T.; Kossut, J.; Bayer, M.

In: Physical Review B - Condensed Matter and Materials Physics, Vol. 86, No. 24, 2012, p. 245314_1-5.

Research output: Contribution to journalArticle

Harvard

Zhukov, EA, Yugov, OA, Yugova, IA, Yakovlev, DR, Karczewski, G, Wojtowicz, T, Kossut, J & Bayer, M 2012, 'Resonant spin amplification of resident electrons in CdTe/(Cd,Mg)Te quantum wells subject to tilted magnetic fields', Physical Review B - Condensed Matter and Materials Physics, vol. 86, no. 24, pp. 245314_1-5. https://doi.org/DOI: 10.1103/PhysRevB.86.245314

APA

Zhukov, E. A., Yugov, O. A., Yugova, I. A., Yakovlev, D. R., Karczewski, G., Wojtowicz, T., Kossut, J., & Bayer, M. (2012). Resonant spin amplification of resident electrons in CdTe/(Cd,Mg)Te quantum wells subject to tilted magnetic fields. Physical Review B - Condensed Matter and Materials Physics, 86(24), 245314_1-5. https://doi.org/DOI: 10.1103/PhysRevB.86.245314

Vancouver

Zhukov EA, Yugov OA, Yugova IA, Yakovlev DR, Karczewski G, Wojtowicz T et al. Resonant spin amplification of resident electrons in CdTe/(Cd,Mg)Te quantum wells subject to tilted magnetic fields. Physical Review B - Condensed Matter and Materials Physics. 2012;86(24):245314_1-5. https://doi.org/DOI: 10.1103/PhysRevB.86.245314

Author

Zhukov, E. A. ; Yugov, O. A. ; Yugova, I. A. ; Yakovlev, D. R. ; Karczewski, G. ; Wojtowicz, T. ; Kossut, J. ; Bayer, M. / Resonant spin amplification of resident electrons in CdTe/(Cd,Mg)Te quantum wells subject to tilted magnetic fields. In: Physical Review B - Condensed Matter and Materials Physics. 2012 ; Vol. 86, No. 24. pp. 245314_1-5.

BibTeX

@article{d9b9878d00bd478682b672e158265874,
title = "Resonant spin amplification of resident electrons in CdTe/(Cd,Mg)Te quantum wells subject to tilted magnetic fields",
abstract = "Electron spin coherence in CdTe/(Cd,Mg)Te quantum wells is studied experimentally and theoretically in tilted external magnetic fields generated by a superconducting vector magnet. The long-lived spin coherence is measured by pump-probe Kerr rotation in the resonant spin amplification (RSA) regime. The shape of RSA signals is very sensitive to weak magnetic field components deviating from the Voigt or Faraday geometries.",
author = "Zhukov, {E. A.} and Yugov, {O. A.} and Yugova, {I. A.} and Yakovlev, {D. R.} and G. Karczewski and T. Wojtowicz and J. Kossut and M. Bayer",
year = "2012",
doi = "DOI: 10.1103/PhysRevB.86.245314",
language = "не определен",
volume = "86",
pages = "245314_1--5",
journal = "Physical Review B-Condensed Matter",
issn = "1098-0121",
publisher = "American Physical Society",
number = "24",

}

RIS

TY - JOUR

T1 - Resonant spin amplification of resident electrons in CdTe/(Cd,Mg)Te quantum wells subject to tilted magnetic fields

AU - Zhukov, E. A.

AU - Yugov, O. A.

AU - Yugova, I. A.

AU - Yakovlev, D. R.

AU - Karczewski, G.

AU - Wojtowicz, T.

AU - Kossut, J.

AU - Bayer, M.

PY - 2012

Y1 - 2012

N2 - Electron spin coherence in CdTe/(Cd,Mg)Te quantum wells is studied experimentally and theoretically in tilted external magnetic fields generated by a superconducting vector magnet. The long-lived spin coherence is measured by pump-probe Kerr rotation in the resonant spin amplification (RSA) regime. The shape of RSA signals is very sensitive to weak magnetic field components deviating from the Voigt or Faraday geometries.

AB - Electron spin coherence in CdTe/(Cd,Mg)Te quantum wells is studied experimentally and theoretically in tilted external magnetic fields generated by a superconducting vector magnet. The long-lived spin coherence is measured by pump-probe Kerr rotation in the resonant spin amplification (RSA) regime. The shape of RSA signals is very sensitive to weak magnetic field components deviating from the Voigt or Faraday geometries.

U2 - DOI: 10.1103/PhysRevB.86.245314

DO - DOI: 10.1103/PhysRevB.86.245314

M3 - статья

VL - 86

SP - 245314_1-5

JO - Physical Review B-Condensed Matter

JF - Physical Review B-Condensed Matter

SN - 1098-0121

IS - 24

ER -

ID: 5466559