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Experimental and theoretical study of the thermal solubility of the vacancy in germanium

机译:锗空位热溶解度的实验与理论研究

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Quenching experiments are performed using state of the art p-type Czochralski-grown Ge samples. The vacancy formation energy and thermal equilibrium concentration are determined on the basis of resistivity changes measured after quenching, using van der Pauw and Hall measurements. The results are compared with previously published experimental data and with results from analytical and ab initio calculations of the formation energy of the vacancy in different charge states. The deep levels introduced during the quenching step are studied with deep level transient spectroscopy and with FTIR, revealing besides the typical quenching related defects which are probably connected with vacancies also the presence of Cu.
机译:使用现有技术的P型Czochralski-生长的GE样品进行淬火实验。使用Van der Pauw和Hall测量,基于在淬火后测量的电阻率变化来确定空位形成能量和热平衡浓度。将结果与先前公布的实验数据进行了比较,并且来自分析和AB初始计算的结果,不同电荷状态下空位的形成能量。在淬火步骤期间引入的深度水平与深水平的瞬态光谱和FTIR一起研究,除了典型的淬火相关缺陷外,也可以与空位有关的缺陷。

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