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- The frequency band gaps of one-dimensional comb-like waveguide photonic crystals were investigated. 一维类梳状波导是由在一维主链上周期性接枝而形成的光子晶体。
- Relation between Phononic Crystal Frequency Band Gap and Scattering Cross Section in Phononic Crystal 声子晶体中声子频率带隙与散射截面的关系
- The Width of Frequency Band Gap in One-dimensional Comb-like Waveguide Photonic Crystals 一维类梳状波导光子晶体的频率带隙宽度
- A novel BWO with photonic band gap structure[J]. 引用该论文 陈波;钱宝良;钟辉煌.
- frequency band gap 带隙
- This effect is obvious at lower frequency band. 这种效应在振动低频区段更为显著。
- The assigned frequency band is 928 MHz to 902 MHz. 那分配频率乐团是 902个百万赫兹至 928个百万赫兹。
- The relative band gap for a rhombus lattice photonic crystal is studied by plane wave expansion method and high frequency structure simulator (HFSS) simulation. 采用平面波展开法结合HFSS软件研究了菱形晶格光子晶体的相对带隙特性。
- Photonic crystals are a new kind of materials with photonic band gap. 光子晶体是一种具有光子带隙的新型功能材料。
- A novel photonic band gap (PBG) structure is presented in this paper. 提出一种新型微带光子带隙结构。
- Moreover, it is especially appealing for problems with geometric repetitions, such as, gratings, photonic/electromagnetic band gap structures (PBG/EBG), and frequency selective surfaces (FSS). 此外,它特别适合于求解具有几何重复性特征的结构,如栅格、光子带隙/电磁带隙、频率选择表面等。
- We can't hear any program when we turn our radio onto this frequency band. 当收音机调到这个频段上时,什么节目也收听不到。
- The optical band gap energy of CuInS2 thin films, deduced from the optical transmission spectrum, was 1. 50 eV. 结果表明;所制得的样品为四方结构的多晶CuInS_2薄膜;Cu/In比接近化学计量比;其光学禁带宽度为1.;50eV。
- The optical band gap increases from 3.21 eV to 3.25 eV as increasing dopant concentration from 0.01% up to 1%. 薄膜光学带隙随掺杂原子分数的提高从3.;21 eV增大到3
- But CIS possesses band gap energy equal to 1.04eV, which is not within the maximum solar absorption region. 太阳光的吸收要求材料的最佳带隙在1.;45eV左右;不过CuInSe_2的带隙为1
- Another attribute is the flux or radiant power that can be delivered in that narrow frequency band. 另一个性质就是在这样窄的频带内可以给出很高的光通量或辐射功率。
- Our results demonstrate that lattices compounding can create broad complete photonic band gap. 设计了几种一维光子晶体光通信器件。
- The reduction of Si band gap and the enhancement of light intensity under external tensile strain are observed. 在施加外加的伸展应力之下,我们观察到矽的能隙缩减还有光强度的增加。
- They are very compact in time and the frequency bands of interest are narrow. 它们在时间上是非常紧致的同时有意义频带是狭的。
- Tunable band gap is a new and important field in photonic crystals research because of many potential applications. 可调光子晶体由于其潜在的应用价值成为现今光子晶体研究中的一个热点。