Deactivation mechanism of In atoms doped in a Si crystal and reactivation due to codoping with B and C
Deactivation mechanism of In atoms doped in a Si crystal and reactivation due to codoping with B and C
复制标题
Si晶体中掺杂In原子的失活机制及B、C共掺杂引起的再激活
DOI:
10.1103/physrevb.71.205205
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发表时间:
2005
影响因子:
3.7
通讯作者:
N. Aoki
中科院分区:
文献类型:
--
作者:
J. Yamauchi;N. Aoki
We present results of first-principles calculations to clarify the activation and deactivation mechanism of indium (In) atoms in silicon (Si). The interaction between In atoms is found to be attractive and leads to spontaneous formation of the stable and electricallyinactivenearest neighbor substitutional (NNS)cluster, which is responsible for the much lower electrical activity compared with that for the boron atoms in Si. An elemental process of the formation of the NNScluster is found to be exothermic and its activation barrier is, which is comparable to thatof the kick-out reaction from an interstitial In to a substitutional In with an interstitial Si. We found that codoping boron (B) and carbon (C) with In makes the inactivecluster unstable, and is efficient to increase the electrical activity. The activation∕deactivation mechanism of In is relevant to electronic and elastic energy of the clusters (In‐In,In‐B,In‐C), which is clearly explained in the framework of the tight-binding approximation. In addition, we present the results of calculations for the vibrational properties of In‐B and In‐C clusters in Si.