Observation of four-fold azimuthal angle dependence in the terahertz radiation power of (100) p-InAs
The azimuthal angle dependence of the terahertz (THz) radiation power of (100) p-type InAs under 1-T magnetic field is presented. Results exhibited four-fold symmetry for the s-polarized THz radiation power. Moreover, the two-fold symmetry for the p-polarized THz radiation was modified to four-fold...
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oai:animorepository.dlsu.edu.ph:faculty_research-47312022-06-15T06:41:23Z Observation of four-fold azimuthal angle dependence in the terahertz radiation power of (100) p-InAs Estacio, Elmer Ponseca, C. Quema, Alex Ono, S. Pobre, Romeric F. Quiroga, Reuben Murakami, H. Sumikura, H. Tani, M. Sarukura, N. Hangyo, M. The azimuthal angle dependence of the terahertz (THz) radiation power of (100) p-type InAs under 1-T magnetic field is presented. Results exhibited four-fold symmetry for the s-polarized THz radiation power. Moreover, the two-fold symmetry for the p-polarized THz radiation was modified to four-fold symmetry for a 1-T applied magnetic field. A tentative explanation regarding a magnetic field-enhanced L-valley carrier scattering is proposed. The actual physical origin of these results is currently under investigation. ©2006 IEEE. 2006-12-01T08:00:00Z text text/html https://animorepository.dlsu.edu.ph/faculty_research/3729 info:doi/10.1109/ICIMW.2006.368227 https://animorepository.dlsu.edu.ph/context/faculty_research/article/4731/type/native/viewcontent/ICIMW.2006.368227 Faculty Research Work Animo Repository Submillimeter waves Indium arsenide Magnetic fields Electromagnetic waves Physics |
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Submillimeter waves Indium arsenide Magnetic fields Electromagnetic waves Physics Estacio, Elmer Ponseca, C. Quema, Alex Ono, S. Pobre, Romeric F. Quiroga, Reuben Murakami, H. Sumikura, H. Tani, M. Sarukura, N. Hangyo, M. Observation of four-fold azimuthal angle dependence in the terahertz radiation power of (100) p-InAs |
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The azimuthal angle dependence of the terahertz (THz) radiation power of (100) p-type InAs under 1-T magnetic field is presented. Results exhibited four-fold symmetry for the s-polarized THz radiation power. Moreover, the two-fold symmetry for the p-polarized THz radiation was modified to four-fold symmetry for a 1-T applied magnetic field. A tentative explanation regarding a magnetic field-enhanced L-valley carrier scattering is proposed. The actual physical origin of these results is currently under investigation. ©2006 IEEE. |
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text |
author |
Estacio, Elmer Ponseca, C. Quema, Alex Ono, S. Pobre, Romeric F. Quiroga, Reuben Murakami, H. Sumikura, H. Tani, M. Sarukura, N. Hangyo, M. |
author_facet |
Estacio, Elmer Ponseca, C. Quema, Alex Ono, S. Pobre, Romeric F. Quiroga, Reuben Murakami, H. Sumikura, H. Tani, M. Sarukura, N. Hangyo, M. |
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Estacio, Elmer |
title |
Observation of four-fold azimuthal angle dependence in the terahertz radiation power of (100) p-InAs |
title_short |
Observation of four-fold azimuthal angle dependence in the terahertz radiation power of (100) p-InAs |
title_full |
Observation of four-fold azimuthal angle dependence in the terahertz radiation power of (100) p-InAs |
title_fullStr |
Observation of four-fold azimuthal angle dependence in the terahertz radiation power of (100) p-InAs |
title_full_unstemmed |
Observation of four-fold azimuthal angle dependence in the terahertz radiation power of (100) p-InAs |
title_sort |
observation of four-fold azimuthal angle dependence in the terahertz radiation power of (100) p-inas |
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Animo Repository |
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2006 |
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https://animorepository.dlsu.edu.ph/faculty_research/3729 https://animorepository.dlsu.edu.ph/context/faculty_research/article/4731/type/native/viewcontent/ICIMW.2006.368227 |
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