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正交曲线坐标系中单位基矢对时间的导数 被引量:1
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作者 孙树生 成泰民 《沈阳化工大学学报》 CAS 2010年第2期175-177,191,共4页
不同正交曲线坐标系的单位基矢之间的变化矩阵是复数域的幺正矩阵,在实数域是正交矩阵.由此,推导出不同正交曲线坐标系的单位基矢之间的变化规律,进而推导出正交曲线坐标系的单位基矢对本身坐标的求导和对时间的求导规律.再将中间过程... 不同正交曲线坐标系的单位基矢之间的变化矩阵是复数域的幺正矩阵,在实数域是正交矩阵.由此,推导出不同正交曲线坐标系的单位基矢之间的变化规律,进而推导出正交曲线坐标系的单位基矢对本身坐标的求导和对时间的求导规律.再将中间过程的另一正交曲线坐标系的单位基矢选取为单位常矢量,得出普适公式.最后以球坐标系与柱坐标系的单位基矢的本身空间坐标求导为例进行讨论,分别得出球坐标系与柱坐标系中单位基矢对时间的一阶、二阶导数的变化规律. 展开更多
关键词 正交曲线坐标系 幺正算符 单位基矢
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Electronic Band Structure of Graphene Based on the Rectangular 4-Atom Unit Cell
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作者 Akira Suzuki Masashi Tanabe Shigeji Fujita 《Journal of Modern Physics》 2017年第4期607-621,共15页
The Wigner-Seitz unit cell (rhombus) for a honeycomb lattice fails to establish a k-vector in the 2D space, which is required for the Bloch electron dynamics. Phonon motion cannot be discussed in the triangular coordi... The Wigner-Seitz unit cell (rhombus) for a honeycomb lattice fails to establish a k-vector in the 2D space, which is required for the Bloch electron dynamics. Phonon motion cannot be discussed in the triangular coordinates, either. In this paper, we propose a rectangular 4-atom unit cell model, which allows us to discuss the electron and phonon (wave packets) motion in the k-space. The present paper discusses the band structure of graphene based on the rectangular 4-atom unit cell model to establish an appropriate k-vector for the Bloch electron dynamics. To obtain the band energy of a Bloch electron in graphene, we extend the tight-binding calculations for the Wigner-Seitz (2-atom unit cell) model of Reich et al. (Physical Review B, 66, Article ID: 035412 (2002)) to the rectangular 4-atom unit cell model. It is shown that the graphene band structure based on the rectangular 4-atom unit cell model reveals the same band structure of the graphene based on the Wigner-Seitz 2-atom unit cell model;the &pi;-band energy holds a linear dispersion (&epsilon;&minus;k ) relations near the Fermi energy (crossing points of the valence and the conduction bands) in the first Brillouin zone of the rectangular reciprocal lattice. We then confirm the suitability of the proposed rectangular (orthogonal) unit cell model for graphene in order to establish a 2D k-vector responsible for the Bloch electron (wave packet) dynamics in graphene. 展开更多
关键词 GRAPHENE RECTANGULAR 4-Atom unit Cell Model PRIMITIVE Orthogonal basis vector BLOCH Electron (Wave Packet) Dynamics k-vector Dirac Points Linear Dispersion Relation
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