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首页> 外文期刊>Physical review >Ab Initio Study Of The Dielectric Response Of Crystalline Ropes Of Metallic Single-walled Carbon Nanotubes: Tube-diameter And Helicity Effects
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Ab Initio Study Of The Dielectric Response Of Crystalline Ropes Of Metallic Single-walled Carbon Nanotubes: Tube-diameter And Helicity Effects

机译:金属单壁碳纳米管结晶绳介电响应的从头算研究:管径和螺旋效应

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The dielectric-response functions of crystalline ropes of metallic single-walled carbon nanotubes were determined from time-dependent density-functional theory in the random-phase approximation. Interband transitions and plasmonic excitations were studied as a function of momentum transfer. The impact of the tube diameter was shown for the (n,n) armchair-type series (n ranging from 3 to 8) covering a diameter range from 4 to 11 A. Helicity effects were examined for the thinnest tubes, the armchair (3,3) versus the zigzag (5,0) configurations. Our results give detailed insight into the various kinds of excitations that can be observed in ropes of nanotubes. Recent experimental findings and trends by electron energy loss and Raman spectroscopies are reproduced and explained.
机译:金属单壁碳纳米管的结晶绳的介电响应函数是根据随时间变化的密度泛函理论在随机相近似中确定的。研究了带间跃迁和等离子体激元作为动量传递的函数。显示了直径(n,n)扶手椅型系列(n为3到8)覆盖直径范围为4到11 A的管子直径的影响。检查了最薄管子的扶手椅的螺旋效应(3 ,3)与之字形(5,0)配置。我们的结果提供了对在纳米管的绳索中可以观察到的各种激发的详细了解。复制和解释了通过电子能量损失和拉曼光谱学进行的最新实验发现和趋势。

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