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低能粒子与X射线在碳纳米管(绳)内传输研究的现状
引用本文:郑里平,李勇,朱志远,夏汇浩,朱德彰.低能粒子与X射线在碳纳米管(绳)内传输研究的现状[J].原子核物理评论,2008,25(3):265-271.
作者姓名:郑里平  李勇  朱志远  夏汇浩  朱德彰
作者单位:中国科学院上海应用物理研究所, 上海 201800
基金项目:中国科学院知识创新工程项目
摘    要:高能粒子(沟道)传输时, 粒子质量与入射能量有关。 低能粒子(沟道)传输时, 粒子(静止)质量与入射能量无关。 与其说高低能量区别, 不如说质量观念区别; 因此两者研究是不同观念的研究。 沟道连续势阱的柱状对称性与碳纳米管结构的变化无关。 X射线(沟道)传输表现为两方面: 在波动性方面, 它遵守光学散射规律; 在粒子性方面, 它被沟道连续势阱束缚。 For high energy particle transmission, its mass depends on its incident energy. For low energy particle transmission, its (static) mass is independent of its incident energy. The difference between the mass ideas is rather than that between high and low energies. Thus, these two transmission studies are very different in ideas. The column symmetry of transverse continuum potential well is independent of the nanotube structure. X ray transmission consists of two aspects: as wave, it is scattered by the laws of ray optics; as particle, it is captured in the transverse continuum potential well.

关 键 词:碳纳米管(绳)    毛细管    沟道    粒子传输    X射线传输
收稿时间:1900-01-01

Present Status of Studies of Low Energy Particles and X-ray Transmissions in Carbon Nanotube (Rope)
ZHENG Li-ping,LI Yong,ZHU Zhi-yuan,XIA Hui-hao,ZHU De-zhang.Present Status of Studies of Low Energy Particles and X-ray Transmissions in Carbon Nanotube (Rope)[J].Nuclear Physics Review,2008,25(3):265-271.
Authors:ZHENG Li-ping  LI Yong  ZHU Zhi-yuan  XIA Hui-hao  ZHU De-zhang
Institution:Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China
Abstract:For high-energy particle transmission,its mass depends on its incident energy.For low-energy particle transmission,its (static) mass is independent of its incident energy.The difference between the mass ideas is rather than that between high and low energies.Thus,these two transmission studies are very different in ideas.The column symmetry of transverse continuum potential well is independent of the nanotube structure.X-ray transmission consists of two aspects:as wave,it is scattered by the laws of ray optics;as particle,it is captured in the transverse continuum potential well.
Keywords:nanotube (rope)  capillary  channeling  particle transmission  X-ray transmission
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