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- W1182906285 abstract "This chapter reviews current understanding of the shallow acceptor states in silicon and germanium. While these states are analogous to the donor states in a general way, one does not have nearly as detailed a picture of them. Secondly, spin resonance experiments, which have shed so much light on the nature of donor states, have not been successful in the case of acceptor states. Acceptor states are wave packets made up largely of Bloch waves chosen from near the top of the valence band. To understand them, one requires some information about the structure of this band. This information, which has, for the most part, been extracted from cyclotron resonance experiments, is summarized. In germanium spin resonance experiments have not been successful so that one does not have an experimental source for the g factor. The spin orbit interaction in germanium may be expected to be about an order of magnitude larger than in silicon because of the higher atomic number. To obtain the diamagnetic susceptibility, one must, as usual, calculate the energy of the donor state up the second order in the magnetic field H." @default.
- W1182906285 created "2016-06-24" @default.
- W1182906285 creator A5015070406 @default.
- W1182906285 date "1957-01-01" @default.
- W1182906285 modified "2023-10-13" @default.
- W1182906285 title "Shallow Impurity States in Silicon and Germanium" @default.
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- W1182906285 doi "https://doi.org/10.1016/s0081-1947(08)60104-6" @default.
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