Quantum Oscillation of the Sound Velocity and the Strain Dependence of the Fermi Surface in Zinc
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概要
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The strain derivatives of the areas of several orbits on the Fermi surface inzinc (i.e. deformation parameters) were determined from the measurements ofquantum oscillations of sound velocity in magnetic field up to 50 kG. The ox-perimental values are in good agreement with the results calculated by the 3-OPW method proposed by Watts and Sundstr6m. From the experimental andtheoretical deformation parameter values, the values of the form factors of thepseudopotential matrix element and its derivatives with respect to g. were de-termined; V(g.)= -0.0064 Ryd, F(.y.)=0.0372 Ryd and F(y.)= -0.0351 Ryd,and dF(y.)/d(y./2A.)=0.367Ryd, dF(,(.)/d(y./2A.)=0.262]{yd and c1V(g.)/d(y./2A.)=0.753 Ryd, where g0, g. and g. are the [1010]-, 110111- and [0002]-reciprocal lattice vector, respectively and k. is free electron value of the Fermiwave number.
- 社団法人日本物理学会の論文
- 1983-03-15
著者
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Kumashiro Yoshimasa
Department Of Physics Faculty Of Science Kyushu University
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TAKANO Shuzo
Department of Physics,Kyushu University
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Hoshino Shigeki
Department Of Physics Faculty Of Science Kyushu University
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Takano Shuzo
Department Of Computer And Electronics Kyushu Institute Of Techonology
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Hoshino Shigeki
Department of Physics,Faculty of Science,Kyushu University
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