Download Diffusion in Semiconductors by C.E. Allen, D.L. Beke, H. Bracht, C.M. Bruff, M.B. Dutt, G. PDF

By C.E. Allen, D.L. Beke, H. Bracht, C.M. Bruff, M.B. Dutt, G. Erdelyi, P. Gas, F.M. d'Heurle, G.E. Murch, E.G. Seebauer, B.L. Sharma, N.A. Stolwijk

Subvolume A of 2 subvolumes on Diffusion in Semi-conductors and Non-Metallic Solids contains a complete and significant compilation of knowledge for the subsequent fabrics and homes: diffusion in silicon, germanium and their alloys, diffusion in compound semiconductors, diffusion in silicides, chemical diffusion in bulk inhomogeneous semiconductors, grain-boundary and dislocation diffusion in semiconductors and silicides and floor diffusion on semiconductors. even if lots of the silicides aren't semiconducting, this bankruptcy is integrated right here simply because a couple of them became built-in within the Si know-how and since they weren't lined within the earlier quantity III/26 on diffusion in metal components. Subvolume A features a CD-ROM.

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J. Phys. Soc. Jpn. 19 (1964) 839. : La Diffusion dans les Solides. Paris: Presses Universitaires de France, 1966. : Phys. Status Solidi 16 (1966) 439. : Phys. Status Solidi 16 (1966) K27. : Diffusion Kinetics of Atoms in Crystals, Princeton: van Nostrand, 1968. : Correlation Effects in Diffusion in Solids, in: Physical Chemistry an Advanced Treatise, Vol. X, Chapt. 5. New York: Academic Press, 1970. : Point Defects and Diffusion, Oxford, Clarendon Press, 1972. : Anelastic Relaxation in Crystalline Solids .

Jpn. Inst. Met. 2 (1961) 25. : J. Appl. Phys. 34 (1963) 1679. L. : J. Am. Ceram. Soc. 46 (1963) 541, 545. : Br. J. Appl. Phys. 14 (1963) 351. : Diffusion in Solids, Liquids and Gases (2nd Edition). New York: Academic Press, 1964. : J. Phys. Soc. Jpn. 19 (1964) 839. : La Diffusion dans les Solides. Paris: Presses Universitaires de France, 1966. : Phys. Status Solidi 16 (1966) 439. : Phys. Status Solidi 16 (1966) K27. : Diffusion Kinetics of Atoms in Crystals, Princeton: van Nostrand, 1968. : Correlation Effects in Diffusion in Solids, in: Physical Chemistry an Advanced Treatise, Vol.

Coeff. 8 PbSe ~ Fig. 54. PbSe-SnSe. )) [75L1]. 8 PbTe ~ Fig. 55. PbTe-SnTe. )) [75L1]. coeff. D [m s ] 2 –1 –14 4 Lando lt -Bö rnst ein New Series III/33A 923 K 2 –15 10 ~ Fig. 56. PbTe-SnTe. )) [75L1]. coeff. coeff. 8 ZnTe ~ Fig. 58. ZnSe-ZnTe. Chemical diffusion coefficient D in ZnSe-ZnTe for stoichiometric material as as a function of mass fraction of ZnTe wZnTe at 1223 K [75L1]. 923 K 8 8 6 –16 973 K –15 T = 1223 K –15 10 T = 1023 K ZnSe - ZnTe 2 2 –1 2 10 [Ref. p. 8 PbTe ~ Fig. 57. PbTe-SnTe.

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