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首页> 外文期刊>Physical Review, B. Condensed Matter >VISIBLE PHOTOLUMINESCENCE FROM SILICON-ION-IMPLANTED SIO2 FILM AND ITS MULTIPLE MECHANISMS
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VISIBLE PHOTOLUMINESCENCE FROM SILICON-ION-IMPLANTED SIO2 FILM AND ITS MULTIPLE MECHANISMS

机译:硅离子注入的SIO2膜的可见光致发光及其多种机理

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摘要

Strong photoluminescence from silicon-ion-implanted thermal SiO2 film was investigated under various conditions. The photoluminescence spectrum of as-implanted samples or samples annealed in N-2 at a temperature below 1000 degrees C consists of three bands centered at about 470, 550, and 630 nm. Annealing at a temperature above 1000 degrees C for a long enough time brings about one photoluminescence band peaking at about 730 nm. The peak wavelengths of these four bands are all independent of annealing or excitation conditions. As the annealing temperature is increased, 470-, 550-, and 630-nm bands are initially intensified and then weakened with the intensity maxima at 600, 300, and 200 degrees C, respectively; as the annealing time increases from 1 min, they are monotonously weakened. The 730-nm band is always strengthened whether with increasing annealing time or temperature within our experimental range. In addition, these four bands show different excitation behaviors. The discussion section argues that the 470-, 550-, and 630-nm bands result from;different point defects in the bulk of silicon implanted SiO,; while the 730-nm one results from luminescence centers at the interface between the nanocrystal silicon and SiO2 matrix. [References: 31]
机译:在各种条件下研究了注入硅离子的热SiO2膜的强光致发光。植入后的样品或在低于1000摄氏度的温度下在N-2中退火的样品的光致发光光谱由中心在约470、550和630 nm的三个波段组成。在高于1000摄氏度的温度下退火足够长的时间会导致一个光致发光带在约730nm处达到峰值。这四个波段的峰值波长都与退火或激发条件无关。随着退火温度的升高,首先会增强470-,550-和630-nm波段,然后以600、300和200摄氏度的最大强度减弱。随着退火时间从1分钟开始增加,它们被单调减弱。无论在我们的实验范围内,随着退火时间的增加或温度的增加,730 nm波段都会不断增强。另外,这四个频带显示出不同的激励行为。讨论部分认为470、550和630 nm波段是由硅注入的SiO的主体中的不同点缺陷引起的。而730 nm则是由纳米晶体硅与SiO2基体之间界面处的发光中心产生的。 [参考:31]

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