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Photoluminescence and bonding structure evolution of amorphous carbon films with laser intensity

机译:激光强度对非晶碳膜的光致发光和键结构的演化

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The hydrogen-free diamond-like carbon (DLC) films were prepared at different laser intensities by pulsed laser ablating a graphite target in vacuum circumstance at room temperature. By varying the laser intensities from 2.5 x 10(8) to 7.5 x 10(8) W/cm(2) the room-temperature photoluminescence (PL) was found in the range of 580-800nm. The PL integrated intensity was decreased with increase of laser intensity up to 5.0 x 10(8) W/cm(2) and then was increased thereafter. Over the same laser intensity region a similar variation trend of the deposition rates of films can be observed. The bonding structure of the carbon atoms in the films was characterized by Raman spectroscopy. Raman measurement showed that the sp(2) bonded fraction increased at low or high laser intensity, while reached a minimum value at 5.0 x 10(8) W/cm(2). The results indicate that laser intensity has a strong influence on the PL properties of the DLC films and the evolution of the PL was deduced to be correlated with the changes Of sp(2) fraction. Crown Copyright.
机译:通过在室温下真空脉冲烧蚀石墨靶,以不同的激光强度制备无氢类金刚石碳(DLC)薄膜。通过将激光强度从2.5 x 10(8)更改为7.5 x 10(8)W / cm(2),发现室温光致发光(PL)在580-800nm的范围内。 PL集成强度随着激光强度的增加而减小,最高达到5.0 x 10(8)W / cm(2),然后增加。在相同的激光强度区域上,可以观察到相似的薄膜沉积速率变化趋势。膜中碳原子的键结构通过拉曼光谱表征。拉曼测量显示,在低或高激光强度下,sp(2)的结合分数增加,而在5.0 x 10(8)W / cm(2)时达到最小值。结果表明,激光强度对DLC薄膜的PL特性有很大的影响,并推论PL的演化与sp(2)分数的变化相关。皇冠版权。

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