Proceedings of the International School of Physics "Enrico Fermi.", Volume 22N. Zanichelli, 1963 - Nuclear physics |
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Page 338
[12] E. D. Palik and R. F. Wallis: Phys. Rev., 123, 131 (1961). [13] R. N. Dexter:
Journ. Phys. Chem. Solids, 8, 494 (1959). [14] M. J. Stevenson: Phys. Rev. Lett., 3
, 464 (1959). [15] M. J. Stevenson: to be published. [16] C. J. Rauch: Phys. Rev.
[12] E. D. Palik and R. F. Wallis: Phys. Rev., 123, 131 (1961). [13] R. N. Dexter:
Journ. Phys. Chem. Solids, 8, 494 (1959). [14] M. J. Stevenson: Phys. Rev. Lett., 3
, 464 (1959). [15] M. J. Stevenson: to be published. [16] C. J. Rauch: Phys. Rev.
Page 339
[7] E. W. J. Mitchell: Proc Phys. Soc (London]. B 68, 973 (1955). [8] H. von Kimmel
: Zeits. Naturfor.. A 12, 1016 (1957). [9] T. S. Moss, S. I>. Smith and K. W. Taylor:
Journ. Phys. Chem. Solids, 8, 323 (1959). [10] R. N. Brown and B. Lax: Bull.
[7] E. W. J. Mitchell: Proc Phys. Soc (London]. B 68, 973 (1955). [8] H. von Kimmel
: Zeits. Naturfor.. A 12, 1016 (1957). [9] T. S. Moss, S. I>. Smith and K. W. Taylor:
Journ. Phys. Chem. Solids, 8, 323 (1959). [10] R. N. Brown and B. Lax: Bull.
Page 340
[20] L. H. Hall, J. Bakdeen and F. L. Blatt: Phys. Rev., 95, 559 (1954); Atlantic City
Conference on Photoconductivity (New York, 1954). [21] B. Hartmann and B.
Kleman : Arkiv f. Fysik, 18, 75 (1960). [22] R. N. Brown and B. Lax: Bull. Am. Phys.
[20] L. H. Hall, J. Bakdeen and F. L. Blatt: Phys. Rev., 95, 559 (1954); Atlantic City
Conference on Photoconductivity (New York, 1954). [21] B. Hartmann and B.
Kleman : Arkiv f. Fysik, 18, 75 (1960). [22] R. N. Brown and B. Lax: Bull. Am. Phys.
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absorption acceptor approximation assumed band edge band structure Brillouin zone calculated carrier centre charge Chem coefficient components compound concentration conduction band consider constant corresponding crystal curves cyclotron resonance degenerate density diffusion direct transition discussed donor doping effective mass electric field energy gap energy surfaces equation equilibrium example exciton experimental expression Faraday rotation foreign atoms free electron frequency germanium given hence holes imperfections impurity indium antimonide InSb interaction interband ionization ions Journ lattice levels linear liquid magnetic field matrix measurements melt mobility momentum obtained optical p-type phonon Phys potential pressure quantum range reciprocal lattice region samples scattering semiconductors shown in Fig spherical spin spin-orbit structure elements symmetry tensor theory thermodynamic thermodynamic potentials tion transverse valence band valley Voigt effect wave functions wave vector Zeeman effect zero zone