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Ab initio study of oxygen vacancies in alpha-quartz

机译:从头算研究阿尔法石英中的氧空位

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摘要

Extrinsic levels, formation energies, and relaxation geometries are calculated ab initio for oxygen vacancies in alpha-quartz SiO2. The vacancy is found to be thermodynamically stable in the charge states Q = +3, Q = 0, Q = -2, and Q = -3. The charged states are stabilized by large and asymmetric distortions near the vacancy site. Concurrently, Franck-Condon shifts for absorption and recombination related to these states are found to be strongly asymmetric. In undoped quartz, the ground state of the vacancy is the neutral charge state, while for moderate p-type and n-type doping, the +3 and -3 states are favored, respectively, over a wide Fermi level window. Optical transitions related to the vacancy are predicted at around 3 eV and 6.5 eV (absorption) and 2.5-3.0 eV (emission), depending on the charge state of the ground state. (C) 1997 Elsevier Science B.V.
机译:从头算出α-石英SiO2中氧空位的外在能级,形成能和弛豫几何形状。发现空位在电荷状态Q = + 3,Q = 0,Q = -2和Q = -3下是热力学稳定的。通过在空位附近的大且不对称的畸变来稳定带电状态。同时,发现与这些状态有关的吸收和重组的弗兰克-康登位移非常不对称。在未掺杂的石英中,空位的基态为中性电荷态,而对于中等p型和n型掺杂,在宽的费米能级窗口上分别偏爱+3和-3状态。取决于基态的电荷状态,与空位相关的光学跃迁预计在3 eV和6.5 eV(吸收)和2.5-3.0 eV(发射)附近。 (C)1997年Elsevier Science B.V.

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