Magneto-optical effects in semimetallic Bi1-xSbx (x=0.015)
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2012
Authors
Đorđević, SVWolf, MS
Stojilović, N
Nikolić, Maria Vesna

Vujatović, Stevan S
Nikolić, Pantelija M.

Tung, LC
Article (Published version)

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We report the results of infrared and magneto-optical spectroscopy study on electrodynamic response of bismuth doped with 1.5% of antimony. The spectra are presented for temperatures down to 4.2 K, and in magnetic fields as high as 18 T. The results reveal strong magneto-optical activity, similar to pure bismuth, however there are some differences introduced by antimony doping. Analysis of optical functions reveals that the two type of charge carriers respond differently to external magnetic field. Finally, when the system enters the extreme quantum regime, both the inter- and intraband Landau Level transition are observed in the spectra.
Keywords:
bismuth / antimony / infrared spectroscopy / magneto-optical spectroscopySource:
Physical Review B, 2012, 86, 11Publisher:
- Amer Physical Soc, College Pk
Funding / projects:
- University of Akron FRG
- NSFNational Science Foundation (NSF) [DMR-0654118]
- State of Florida
- DOEUnited States Department of Energy (DOE)
DOI: 10.1103/PhysRevB.86.115119
ISSN: 2469-9950
WoS: 000308640900005
Scopus: 2-s2.0-84866411768
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Institut za multidisciplinarna istraživanjaTY - JOUR AU - Đorđević, SV AU - Wolf, MS AU - Stojilović, N AU - Nikolić, Maria Vesna AU - Vujatović, Stevan S AU - Nikolić, Pantelija M. AU - Tung, LC PY - 2012 UR - http://rimsi.imsi.bg.ac.rs/handle/123456789/552 AB - We report the results of infrared and magneto-optical spectroscopy study on electrodynamic response of bismuth doped with 1.5% of antimony. The spectra are presented for temperatures down to 4.2 K, and in magnetic fields as high as 18 T. The results reveal strong magneto-optical activity, similar to pure bismuth, however there are some differences introduced by antimony doping. Analysis of optical functions reveals that the two type of charge carriers respond differently to external magnetic field. Finally, when the system enters the extreme quantum regime, both the inter- and intraband Landau Level transition are observed in the spectra. PB - Amer Physical Soc, College Pk T2 - Physical Review B T1 - Magneto-optical effects in semimetallic Bi1-xSbx (x=0.015) IS - 11 VL - 86 DO - 10.1103/PhysRevB.86.115119 ER -
@article{ author = "Đorđević, SV and Wolf, MS and Stojilović, N and Nikolić, Maria Vesna and Vujatović, Stevan S and Nikolić, Pantelija M. and Tung, LC", year = "2012", abstract = "We report the results of infrared and magneto-optical spectroscopy study on electrodynamic response of bismuth doped with 1.5% of antimony. The spectra are presented for temperatures down to 4.2 K, and in magnetic fields as high as 18 T. The results reveal strong magneto-optical activity, similar to pure bismuth, however there are some differences introduced by antimony doping. Analysis of optical functions reveals that the two type of charge carriers respond differently to external magnetic field. Finally, when the system enters the extreme quantum regime, both the inter- and intraband Landau Level transition are observed in the spectra.", publisher = "Amer Physical Soc, College Pk", journal = "Physical Review B", title = "Magneto-optical effects in semimetallic Bi1-xSbx (x=0.015)", number = "11", volume = "86", doi = "10.1103/PhysRevB.86.115119" }
Đorđević, S., Wolf, M., Stojilović, N., Nikolić, M. V., Vujatović, S. S., Nikolić, P. M.,& Tung, L.. (2012). Magneto-optical effects in semimetallic Bi1-xSbx (x=0.015). in Physical Review B Amer Physical Soc, College Pk., 86(11). https://doi.org/10.1103/PhysRevB.86.115119
Đorđević S, Wolf M, Stojilović N, Nikolić MV, Vujatović SS, Nikolić PM, Tung L. Magneto-optical effects in semimetallic Bi1-xSbx (x=0.015). in Physical Review B. 2012;86(11). doi:10.1103/PhysRevB.86.115119 .
Đorđević, SV, Wolf, MS, Stojilović, N, Nikolić, Maria Vesna, Vujatović, Stevan S, Nikolić, Pantelija M., Tung, LC, "Magneto-optical effects in semimetallic Bi1-xSbx (x=0.015)" in Physical Review B, 86, no. 11 (2012), https://doi.org/10.1103/PhysRevB.86.115119 . .