Calculation of Dilational and Uniaxial Shear Potentials of Ge by a State-Independent Many-Body Projection Technique.

  • Kang Nam Lyong
    Department of Physics, Cheju National University, Cheju 690–756, Seoul, Korea
  • Ryu Jai Yon
    Department of Physics, Cheju National University, Cheju 690–756, Seoul, Korea
  • Choi Sang Don
    Department of Physics, Kyungpook National University, Taegu 702–701, Seoul, Korea

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  • Calculation of Dilational and Uniaxial

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Utilizing state-independent projection operators, we present a new optical conductivity formula for cyclotron transition in the system of electrons interacting anisotropically with phonons. The line-shape factor appearing in the conductivity tensor contains the many body effects for electrons and phonons. Applying this formula, we determine the two deformation potentials (dilation potential Ξd and uniaxial shear potential Ξu) of Ge in the quantum limit. By fitting the present theoretical values with the experimental data of Murase, Enjouji and Otsuka [J. Phys. Soc. Jpn. 29 (1970) 1248] and Kobori, Ohyama and Otsuka [J. Phys. Soc. Jpn. 59 (1990) 2141], we obtain Ξu=17.0± 0.6, eV and Ξd=-10.88± 0.47, eV.

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