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Absorption of infrared radiation by a giant enhancement of two-phonon lattice modes at a dielectric-conductor interface

机译:介电导体界面上的两个声子晶格模式的极大增强,吸收红外辐射

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摘要

Recent experimental work has shown that, at certain frequencies of infrared radiation, there is a giant absorption at the interface between a nanosize graphite substrate doped with copper and diamond nanocrystals grown on the substrate. We propose a model for this absorption based on the Born approach which uses a set of dynamic surface dipoles induced in a conducting medium at its interface with a dielectric and where the frequency of radiation corresponds to a combination of two-lattice vibrations. The wavenumber at which the enhancement occurs can be determined from the fundamental frequency of the vibrations and the functional dependence of the extinction coefficient as a function of wavenumber can be determined from the relaxation times and the plasma frequencies. An analytical expression for the enhancement absorption factor is derived and it is shown how the cut-off of the absorption band can be used to ascertain the size and shape of conductive nanocrystals. [References: 15]
机译:最近的实验工作表明,在一定频率的红外辐射下,掺杂铜的纳米尺寸石墨衬底与在衬底上生长的金刚石纳米晶体之间的界面处存在巨大的吸收。我们基于Born方法提出一种吸收模型,该模型使用在导电介质与电介质的界面处在导电介质中感应的一组动态表面偶极子,并且辐射频率对应于两个晶格振动的组合。可以从振动的基本频率确定发生增强的波数,并且可以从弛豫时间和等离子体频率确定消光系数与波数的函数关系。推导了增强吸收因子的解析表达式,并显示了如何利用吸收带的截止来确定导电纳米晶体的尺寸和形状。 [参考:15]

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