Mesoscopic Physics of Phonon Transport in Carbon Materials

K. Sasaoka, Takahiro Yamamoto
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引用次数: 1

Abstract

We give a theoretical review of recent development of the mesoscopic physics of phonon transport in carbon nanotubes, including the quantization of phonon thermal conductance, phonon Anderson localization, and so on. A single-walled carbon nanotube (SWCNT) can be regarded as a typical one-dimensional phonon conductor and exhibits various interesting phenomena originating from its one dimensionality. For example, a pristine SWCNT with- out any defects shows the quantization of phonon thermal conductance at low temperature. On the other hand, a defective SWCNT with randomly distributed carbon isotopes shows the phonon Anderson localization originating from the interference between phonons scattered by isotope impurities.
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碳材料中声子输运的介观物理
本文从理论上综述了近年来碳纳米管中声子输运的介观物理研究进展,包括声子热导的量子化、声子安德森局域化等。单壁碳纳米管(SWCNT)是一种典型的一维声子导体,并因其一维特性而呈现出各种有趣的现象。例如,没有任何缺陷的原始swcnts在低温下显示声子热导的量子化。另一方面,碳同位素随机分布的缺陷碳纳米管表现出由同位素杂质散射声子之间的干扰引起的声子安德森局域化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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