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- W2022233614 abstract "This paper presents a microscopical interpretation of the anisotropy of the hot-hole drift velocity in Ge at 77°K. The theory makes use of the Monte Carlo technique in solving the Boltzmann equation and is based on a single valence band model (the heavy mass one) warped and parabolic. The theoretical calculations carried out in a general form show that: (i) the anisotropy of the hot-hole drift velocity originates from the warping of the valence band structure; (ii) the strong interaction of holes with optical phonons via emission processes plays a fundamental role in the anisotropy supporting the reliability of the streaming motion model first suggested by Pinson and Bray. The comparison between theory and experiment at 77°K in Ge is satisfactory for the whole range of fields examined (50 ⩽ E ⩽ 104Vcm), confirming the basic validity of the present approach. The importance of optical and acoustic scattering mechanisms have been found comparable, the coupling strength ratio wopwac assuming the value 1.36." @default.
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- W2022233614 date "1976-01-01" @default.
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- W2022233614 title "The anisotropy of the hot-hole drift velocity in Ge" @default.
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- W2022233614 doi "https://doi.org/10.1016/0022-3697(76)90090-1" @default.
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