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PROPAGATION AND DIMENSIONAL RESONANCES OF HELICON‐LIKE WAVES IN POWDERED SEMICONDUCTORS AND SEMIMETALS
1.Extensive presentation of experimental results will appear elsewhere. See, for example, J. K. Furdyna and F. L. Galeener, Proceedings of the 9th International Conference on Physics of Semiconductors, Moscow, USSR, 1968 (to be published).
2.See, e.g., E. D. Palik and G. B. Wright, in Semiconductors and Semimetals, R. K. Willardson and A. C. Beer, Eds. (Academic Press Inc., New York, 1967), Vol. 3, p. 421 ff.
3.For extensive discussion of the helicon limit and helicon slab transmission in semiconductors see J. K. Furdyna, Appl. Opt. 6, 675 (1967).
4.Temperature variation of helicon dispersion in intrinsic semiconductors is discussed by J. K. Furdyna, Phys. Rev. Letters 14, 635 (1965);
4.see esp. Fig. 3.
5.L. L. Foldy, Phys. Rev. 67, 107 (1945);
5.M. Lax, Rev. Mod. Phys. 23, 287 (1951);
5.and, P. C. Waterman and R. Truell, J. Math. Phys. 2, 512 (1961).
6.H. C. Van de Hulst, Light Scattering by Small Particles (John Wiley & Sons, Inc., New York, 1957), p. 114 ff.
7.M. Cardona B. Rosenblum, Phys. Rev. 129, 991 (1963).
8.J. K. Furdyna, Phys. Rev. Letters 16, 646 (1966);
8.Proceedings of the 8th Conference on Physics of Semiconductors, Kyoto, Japan, 1966, p. 713.
9.L. E. Gurevich and A. L. Efros, Zh. Eksp. Teor. Fiz. 43, 561 (1962)
9.[L. E. Gurevich and A. L. Efros, English transl.: Sov. Phys.‐JETP 16, 402 (1963)].
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