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Magnetic dependence of cyclotron transition absorption in piezoelectric materials based on the quantum transport theory
Authors:S.H. Lee  J.T. LeeJ.Y. Sug  J.H. LeeG. Sa-Gong
Affiliation:
  • a Department of Electrical Engineering, Donga University, Busan, 604-714, Republic of Korea
  • b School of Phys. & Ener. Science, Kyungpook National University, Daegu 702-701, Republic of Korea
  • c Department of Materials Science & Engi., Donga University, Busan, 604-714, Republic of Korea
  • Abstract:We investigated theoretically the magnetic field dependence of the quantum optical transition of quasi 2-Dimensional Landau splitting system, in CdS and ZnO. Through the analysis of the current work, we found the increasing properties of the optical Quantum Transition Line Shapes (QTLSs) which show the absorption power and the Quantum Transition Line Widths(QTLWs) with the magnetic-field in CdS and ZnO. We also found that QTLW, γ(B)total of CdS < γ(B)total of ZnO in the magnetic field region B < 25 Tesla.
    Keywords:CdS and ZnO   Quantum transport theory   Equilibrium Average Projection Scheme (EAPS)   Response formula and scattering factor formula   Electron phonon coupling system   Quantum Transition Line Shapes (QTLS)   Quantum Transition Line Widths (QTLW)   Cyclotron resonance
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