band structure

英 [bænd ˈstrʌktʃə(r)] 美 [bænd ˈstrʌktʃər]

能带结构;谱带结构

化学



双语例句

  1. Band Structure Calculations of Two-dimensional Phononic Crystal with Wide-sharp Structural Scatterers
    并列型双组分纤维结构二维粗锐结构声子晶体带结构的计算
  2. Effect of Li~+ dopant on the electrical properties and energy band structure of ZnO varistor ceramics
    Li~+对ZnO压敏陶瓷电性能和能带结构的影响
  3. Study on the Energy Band Structure of the Nanometer-Sized Amorphous Silicon Nitride Solids in terms of Ultraviolet Emission Spectra
    纳米非晶氮化硅块体能态结构的紫外发射谱研究
  4. Band structure of the photonic crystals shows that there exists a partial bandgap.
    通过分析这种光子晶体的能带结构,显示其存在部分带隙。
  5. Band structure and mixed crystal phenomenon seriously cause the deformation intensification coefficient too high, which is the main reason resulted in the difficult rolling.
    带状组织、混晶现象严重导致变形强化系数偏高是造成轧制困难的主要原因。
  6. Then the regulation of translational symmetry to the phonon energy band structure of photonic crystal, as well as how to change phonon translational symmetry of the crystal artificially were analyzed.
    然后分析了平移对称性在声子晶体能带结构调节中的影响,以及如何通过人工调节改变声子晶体的平移对称性。
  7. Band Structure Calculations of Elastic Waves Oblique Incidence to Two-dimensional Phononic Crystals by Multiple-scattering Theory
    多重散射理论计算二维声子晶体斜入射下的带结构
  8. Band Structure of Strained Si/ ( 001) Si_ ( 1-X) Ge_X by First Principles Investigation
    第一性原理研究应变Si/(001)Si(1-X)GeX能带结构
  9. In the band structure, one band that is completely filled with electrons is termed valence band.
    在能带结构中,完全填满电子的带被称为价带。
  10. Transfer Matrix Method and Band Structure for 1-Dimension Phononic Crystal
    转移矩阵方法与一维声子晶体的带结构
  11. Band Structure and Transmission Spectrum of Superlattice Quantum Well for the One-dimensional Component Superlattice
    一维组分超晶格量子阱的能带结构及其透射谱特征
  12. This course has a three part group project assignment which covers the ( 1) physical structure,( 2) the phonon spectra, and the ( 3) band structure of a semiconductor.
    本课程含有一个具有三个组成部分的小组设计作业,覆盖半导体的:(1)物理结构,(2)声子谱,以及(3)带结构。
  13. First-principles Study of Band Structure and Optical Properties of InP
    第一性原理研究InP的能带结构与光学性能
  14. Band structure of phononic crystal constructed by Fibonacci super-cell on square lattice
    正方点阵上Fibonacci超元胞声子晶体的带结构
  15. Propagation of water wave over a periodically perforated bottom and the band structure
    水波在周期性钻孔底部结构中的传播及其能带
  16. Relationship of Band Structure and Optical Functions of Al_2O_3
    Al2O3的能带结构和光学函数的关系
  17. In order to study the energy band fold in phononic crystal superlattice, the plane wave expansion theory is been used to analyze the band structure of phononic crystal superlattice.
    为了研究声子晶体超晶格的能带折叠现象,利用平面波展开法结合超晶胞方法分析了声子晶体超晶格的能带结构。
  18. Pressure Effects on the Band Structure of BCC Lithium with Substitutional Hydrogen Defect
    压力下替位氢对金属锂能带结构的影响
  19. The Energy Band Structure of Round and Rectangle Sectional Quantum Wires in Low Dimensional Semiconductor GaAs
    低维半导体GaAs圆形和矩型量子线的能带结构
  20. The research results showed that the main ore structure is oolitic with a typical band structure of concentric rings.
    结果表明:矿石以鲕状构造为主,具有典型的同心环带结构。
  21. Band Structure Design and Photoelectric Characteristics of GaAs/ GaN Dual-Band Detect Film
    GaAs/GaN双色探测薄膜结构设计与光电特性
  22. A Study on First-Principles of the Band Structure of Valence Electrons for Single Crystal Al
    铝单晶价电子能带结构的第一性原理计算研究
  23. This is a calculated band structure of the software is also very good.
    这是一个计算能带结构的软件,也是很不错的。
  24. We have obtained surface projected band structure and wave vector resolved surface layer densities of states.
    分别给出了理想表面和驰豫表面的投影带结构和波矢分辨的层态密度,并进行了较详细的讨论。
  25. First, the basic theory and methods of phononic band structure are introduced in this paper.
    首先,本文介绍了声子晶体带结构计算的基本理论和方法。
  26. The band structure and the electronic probability density of C60 cluster are calculated.
    计算了C60团簇的能带结构和电子几率密度。
  27. The band structure and the optical transmission properties were investigated by numerical analysis.
    通过数值模拟,分析了该光子晶体的能带结构和光学传输特性,并讨论了光子晶体参数及缺陷的大小对光学传输特性的影响。
  28. The validity of this method is checked by both band structure calculations and transmission measurement of ultrasonic experiment.
    通过对照带结构计算和超声实验测量,我们检验了这种计算方法的有效性。
  29. Therefore, the effective control theory and method of tunability of photonic crystal band structure must be analyzed systematically.
    因此,必须系统分析光子晶体的能带结构可调谐性的有效控制理论和方法。
  30. Then we study the energy band structure and optical properties of Si/ Ge layered structure.
    随后对Si/Ge层状结构的能带结构和光学性质进行了研究。