リソトープ水素化非晶質Siの欠陥凍結現象
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概要
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Defect frozen phenomenon in hydrogenated amorphous silicon (a-Si : H) was investigated with studying temperature dependence of dc conductivity and excess heat capacity in samples which were cooled at various cooling rates from a thermal equilibrium .state kept at 250℃ for 1 h. Differential scanning calorimeter (DSC) studies of P-doped a-Si : H show the behavior governed by relaxation of defect frozen state which is characterized by the equilibrium temperature T_E. The T_E detected by DSC agrees with the one determined by the temperature dependence of dc conductivity. The temperature dependence of excess heat capacity is successfully interpreted by a simulation based on the model of defect specific heat which is caused by the relaxation process of defect frozen states. The temperature dependence of dc conductivity above T_E is characterized by the activation energy E_a, The experimental relation between T_E and Ea in P-doped and compensated a-Si : H was discussed semi-quantitatively on the basis of a model for frozen defect states. It is suggested that a large amount of D^o (neutral dangling bond state) in the compensated sample plays an important role in the relaxation phenomena of defect frozen states.
- 社団法人日本セラミックス協会の論文
- 1989-07-01
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