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电磁量的自然单位和物理学的新效应 被引量:2
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作者 陈竹年 《计量学报》 CSCD 1989年第1期24-28,共5页
本文从基本电荷e、电子质量m、电磁波在真空中的传播速度c和Planck常数h出发,导出电磁量的“真正的”自然单位,并得到物理学中的若干新效应——包括已经发现的Josephson效应、Klitzing效应、校磁共振和磁通量子化现象,以及虽然至今尚未... 本文从基本电荷e、电子质量m、电磁波在真空中的传播速度c和Planck常数h出发,导出电磁量的“真正的”自然单位,并得到物理学中的若干新效应——包括已经发现的Josephson效应、Klitzing效应、校磁共振和磁通量子化现象,以及虽然至今尚未完全证实、但有可能存在的另外一些新的效应,如L=K(h^2/e^4)C、I=Kef等。 展开更多
关键词 电磁 电磁学单位 电磁计量学
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Large and anisotropic linear magnetoresistance in bulk stoichiometric Cd_3As_2 crystals
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作者 WU DeSheng WANG Xia +4 位作者 ZHANG Xu YANG ChongLi ZHENG Ping LI PeiGang SHI YouGuo 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第1期133-138,共6页
Cd3As2 was recently identified as a novel three-dimensional (3D) topological semimetal hosting the long-pursuing 3D Dirac Fermion. Crystals of Cd3As2 grown preferentially along the [100] and [112] directions were ob... Cd3As2 was recently identified as a novel three-dimensional (3D) topological semimetal hosting the long-pursuing 3D Dirac Fermion. Crystals of Cd3As2 grown preferentially along the [100] and [112] directions were obtained through the modified chemical vapor transfer growth method, thus allowing the examination of transport anisotropy. The resistivity and magnetore- sistance (MR) are basically linear with respect to magnetic field (H) in the measured temperature range of 2-300 K irrespective of the directions. The linear resistivity and MR are significantly anisotropic not only along [100] and [112] directions but also with respect to tilt angle between the growth directions and H, thus providing transport signatures of the 3D Dirac Fermion as well as the possible linear and anisotropic change of Weyl Fermi surface in H. Very large MR along the [100] direction is observed, even approaching 3100% at 2 K and 14 kOe (10e = 79.5775 A m^-l). The results would be helpful in renewing interest in studying emergent phenomena arising from bulk 3D Dirac Fermion as well as in paving the way for Cd3As2 to be used in magnetoelectronic sensors. 展开更多
关键词 topological semimetal linear magnetoresistance transport anisotropy
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