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10. Appendix

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734 References<br />

6.73 H. D. Fuchs, C. H. Grein, R. I. Devlin, J. Kuhl, M. Cardona: Anharmonic decay<br />

time, isotopic scattering time, and inhomogeneous line broadening of optical<br />

phonons in 70 Ge, 76 Ge and natural Ge crystals. Phys. Rev. B 44, 8633–8642 (1991)<br />

6.74 R. J. Collins, H. Y. Fan: Infrared lattice absorption bands in germanium, silicon<br />

and diamond. Phys. Rev. 93, 674–678 (1954)<br />

6.75 F. A. Johnson: Lattice absorption bands in silicon. Proc. Phys. Soc. (London)<br />

73, 265–272 (1959)<br />

6.76 M. Lax, E. Burstein: Infrared lattice absorption in ionic and homopolar crystals.<br />

Phys. Rev. 97, 39–52 (1955)<br />

6.77 J. L. Birman: Space group selection rules: Diamond and zinc blende. Phys. Rev.<br />

127, 1093–1106 (1962)<br />

6.78 W. G. Spitzer: Multiphonon lattice absorption, in Optical Properties of III–V Compounds.<br />

Semiconductors and Semimetals 3, 17–69 (Academic, New York 1967)<br />

6.79 H. Bilz, R. Geik, K. F. Renk: Lattice vibrations and infrared absorption of germanium,<br />

silicon, and diamond, in Proc. Int’l Conf. on Lattice Dynamics, ed. by<br />

R. F. Wallis (Pergamon, Oxford 1963) p. 355–368<br />

6.80 A. Debernardi, M. Bernasconi, M. Cardona, M. Parrinello: Infrared absorption<br />

in ·-Si from ab initio molecular dynamics. Appl. Phys. Lett. 71, 2692–2694 (1997)<br />

6.81 J. C. Phillips: Covalent Bonding in Crystals, Molecules, and Polymers (Univ.<br />

Chicago Press, Chicago 1969)<br />

6.82 W. A. Harrison: Electronic Structure and the Properties of Solids: The Physics<br />

of the Chemical Bond (Dover, New York 1989)<br />

6.83 S. K. Sinha: Phonons in semiconductors. CRC Crit. Rev. Solid State Sci. 3,<br />

273–334 (1973)<br />

6.84 S. de Gironcoli, S. Baroni, R. Resta: Piezoelectric properties of III–V semiconductors<br />

from first-principles linear-response theory. Phys. Rev. Lett. 62,<br />

2853–2856 (1989)<br />

6.85 J. A. Sanjurjo, E. López-Cruz, P. Vogl, M. Cardona: Dependence on volume of<br />

the phonon frequencies and their IR effective charges of several III–V semicondutors.<br />

Phys. Rev. B 28, 4579–4584 (1983)<br />

6.86 P. Vogl: In Physics of Nonlinear Transport in Semiconductors, ed. by D. K.<br />

Ferry, J. R. Barker, C. Jacoboni (Plenum, New York 1980) pp. 75–116<br />

6.87 R. D. King-Smith, D. Vanderbilt: Theory of polarization of crystalline solids.<br />

Phys. Rev. B 47, 1651–1654 (1993)<br />

6.88 E. Anastassakis, M. Cardona: Phonons, strains, and pressure in semiconductors,<br />

in High Pressure in Semiconductor Physics II ed. by T. Suski and W. Paul<br />

(Academic, San Diego 1998) p. 196<br />

6.89 H. Ibach, H. Lüth: Solid-State Physics, 2nd edn. (Springer, Berlin, Heidelberg<br />

1995) Chap. 9<br />

6.90 C. Kittel: Introduction to Solid State Physics, 7th edn. (Wiley, New York 1995)<br />

6.91 H. Y. Fan: Effects of free carries on the optical properties, in Optical Properties<br />

on III–V Compounds. Semiconductors and Semimetals 3, 405–419 (Academic,<br />

New York 1967)<br />

6.92 J. R. Dixon: Optical absorption mechanism in InAs, in Proc. Int’l on the<br />

Physics of Semiconductors (Czech. Acad. Sci., Prague; and Academic, New<br />

York 1961) pp. 366–368<br />

6.93 R. Braunstein, E. O. Kane: The valence band structure of the III–V compounds.<br />

J. Phys. Chem. Solids 23, 1423–1429 (1962)<br />

6.94 W. G. Spitzer, H. Y. Fan: Determination of optical constants and carrier effective<br />

mass of semicondutors. Phys. Rev. 106, 882–890 (1957)

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