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Phonon-limited electron mobility in Si, GaAs and GaP with exact treatment of dynamical quadrupoles

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arxiv 2002.00630 v2 pith:VBPITLDF submitted 2020-02-03 cond-mat.mtrl-sci

Phonon-limited electron mobility in Si, GaAs and GaP with exact treatment of dynamical quadrupoles

classification cond-mat.mtrl-sci
keywords advantagedescribeelectronelectron-phonongaasmobilitypotentialsquadrupoles
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We describe a new approach to compute the electron-phonon self-energy and carrier mobilities in semiconductors. Our implementation does not require a localized basis set to interpolate the electron-phonon matrix elements, with the advantage that computations can be easily automated. Scattering potentials are interpolated on dense $\mathbf{q}$ meshes using Fourier transforms and ab initio models to describe the long-range potentials generated by dipoles and quadrupoles. To reduce significantly the computational cost, we take advantage of crystal symmetries and employ the linear tetrahedron method and double-grid integration schemes, in conjunction with filtering techniques in the Brillouin zone. We report results for the electron mobility in Si, GaAs, and GaP obtained with this new methodology.

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