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Enhancement of the longitudinal magnetic moment of the exciton due to its motion. / Chereshko, V. P.; Platonov, A. V.; Mikhailov, G. V.; Davies, J. J.; Wolverson, D.; Cox, R. T.; Cibert, J.; Mariette, H.; Loginov, D. K.; Ubyivovk, E. V.; Efimov, Yu P.; Eliseev, S. A.

In: International Journal of Modern Physics B, Vol. 21, No. 8-9, 10.04.2007, p. 1350-1357.

Research output: Contribution to journalArticlepeer-review

Harvard

Chereshko, VP, Platonov, AV, Mikhailov, GV, Davies, JJ, Wolverson, D, Cox, RT, Cibert, J, Mariette, H, Loginov, DK, Ubyivovk, EV, Efimov, YP & Eliseev, SA 2007, 'Enhancement of the longitudinal magnetic moment of the exciton due to its motion', International Journal of Modern Physics B, vol. 21, no. 8-9, pp. 1350-1357. https://doi.org/10.1142/s0217979207042823

APA

Chereshko, V. P., Platonov, A. V., Mikhailov, G. V., Davies, J. J., Wolverson, D., Cox, R. T., Cibert, J., Mariette, H., Loginov, D. K., Ubyivovk, E. V., Efimov, Y. P., & Eliseev, S. A. (2007). Enhancement of the longitudinal magnetic moment of the exciton due to its motion. International Journal of Modern Physics B, 21(8-9), 1350-1357. https://doi.org/10.1142/s0217979207042823

Vancouver

Chereshko VP, Platonov AV, Mikhailov GV, Davies JJ, Wolverson D, Cox RT et al. Enhancement of the longitudinal magnetic moment of the exciton due to its motion. International Journal of Modern Physics B. 2007 Apr 10;21(8-9):1350-1357. https://doi.org/10.1142/s0217979207042823

Author

Chereshko, V. P. ; Platonov, A. V. ; Mikhailov, G. V. ; Davies, J. J. ; Wolverson, D. ; Cox, R. T. ; Cibert, J. ; Mariette, H. ; Loginov, D. K. ; Ubyivovk, E. V. ; Efimov, Yu P. ; Eliseev, S. A. / Enhancement of the longitudinal magnetic moment of the exciton due to its motion. In: International Journal of Modern Physics B. 2007 ; Vol. 21, No. 8-9. pp. 1350-1357.

BibTeX

@article{3dc7174c293347cea309667190b498cb,
title = "Enhancement of the longitudinal magnetic moment of the exciton due to its motion",
abstract = "A new physical phenomenon has been found, namely a giant enhancement of the exciton magnetic moment due to its motion. This phenomenon was observed in GaAs, CdTe and ZnSe based quantum wells with QW widths much larger than the exciton Bohr radius. Consequently, it is relevant to any crystal with zinc blende structure.",
keywords = "Exciton, Magnetooptics, Zinc Blende semiconductors",
author = "Chereshko, {V. P.} and Platonov, {A. V.} and Mikhailov, {G. V.} and Davies, {J. J.} and D. Wolverson and Cox, {R. T.} and J. Cibert and H. Mariette and Loginov, {D. K.} and Ubyivovk, {E. V.} and Efimov, {Yu P.} and Eliseev, {S. A.}",
year = "2007",
month = apr,
day = "10",
doi = "10.1142/s0217979207042823",
language = "English",
volume = "21",
pages = "1350--1357",
journal = "International Journal of Modern Physics B",
issn = "0217-9792",
publisher = "WORLD SCIENTIFIC PUBL CO PTE LTD",
number = "8-9",

}

RIS

TY - JOUR

T1 - Enhancement of the longitudinal magnetic moment of the exciton due to its motion

AU - Chereshko, V. P.

AU - Platonov, A. V.

AU - Mikhailov, G. V.

AU - Davies, J. J.

AU - Wolverson, D.

AU - Cox, R. T.

AU - Cibert, J.

AU - Mariette, H.

AU - Loginov, D. K.

AU - Ubyivovk, E. V.

AU - Efimov, Yu P.

AU - Eliseev, S. A.

PY - 2007/4/10

Y1 - 2007/4/10

N2 - A new physical phenomenon has been found, namely a giant enhancement of the exciton magnetic moment due to its motion. This phenomenon was observed in GaAs, CdTe and ZnSe based quantum wells with QW widths much larger than the exciton Bohr radius. Consequently, it is relevant to any crystal with zinc blende structure.

AB - A new physical phenomenon has been found, namely a giant enhancement of the exciton magnetic moment due to its motion. This phenomenon was observed in GaAs, CdTe and ZnSe based quantum wells with QW widths much larger than the exciton Bohr radius. Consequently, it is relevant to any crystal with zinc blende structure.

KW - Exciton

KW - Magnetooptics

KW - Zinc Blende semiconductors

UR - http://www.scopus.com/inward/record.url?scp=34248659427&partnerID=8YFLogxK

U2 - 10.1142/s0217979207042823

DO - 10.1142/s0217979207042823

M3 - Article

VL - 21

SP - 1350

EP - 1357

JO - International Journal of Modern Physics B

JF - International Journal of Modern Physics B

SN - 0217-9792

IS - 8-9

ER -

ID: 5069458