Electron Spin Resonance Experiments on Donors in Silicon. III. Investigation of Excited States by the Application of Uniaxial Stress and Their Importance in Relaxation Processes
Electron Spin Resonance Experiments on Donors in Silicon. III. Investigation of Excited States by the Application of Uniaxial Stress and Their Importance in Relaxation Processes
复制标题
硅中供体的电子自旋共振实验。
DOI:
10.1103/physrev.124.1068
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发表时间:
1961
期刊:
影响因子:
--
通讯作者:
G. Feher
中科院分区:
文献类型:
--
作者:
D. Wilson;G. Feher
The excited states of the antimony, phosphorus, and arsenic impurities in silicon have been investigated by subjecting samples to a uniaxial stress and observing the change in the electron spin resonance spectrum. The experiments were performed at 1.25 K and∼ 9000 Mc/sec on silicon samples subjected to strains up to 10− 3. From the reduction in the hyperfine splitting and the observed g anisotropy under strain the following results were deduced: For a deformation potential of 11 ev, the valley-orbit splitting (ie, singlet-doublet spacing) for phosphorus was found to be 0.015 ev, for arsenic 0.023 ev, and for antimony 0.013 ev. For the difference in g values with H parallel (g II) and H perpendicular (g⊥) to the valley axis we obtained for phosphorus-doped silicon, g II− g⊥=(1.04±0. 0 4)× 10− 3.