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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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.