2000字范文,分享全网优秀范文,学习好帮手!
2000字范文 > 光子晶体波导 photonic crystal waveguide英语短句 例句大全

光子晶体波导 photonic crystal waveguide英语短句 例句大全

时间:2019-01-02 05:42:29

相关推荐

光子晶体波导 photonic crystal waveguide英语短句 例句大全

光子晶体波导,photonic crystal waveguide

1)photonic crystal waveguide光子晶体波导

1.Analysis of Transmission Spectrum in Horn-Placket Photonic Crystal Waveguide喇叭型开口光子晶体波导的传输谱研究

2.Enhancing the emission efficiency inphotonic crystal waveguide with coupled waveguide arrays利用耦合波导列提高光子晶体波导辐射

3.A new way of uniform splitting of the optical power by directional coupling between thephotonic crystal waveguides一种实现光子晶体波导定向耦合型多路光均分的新方法

英文短句/例句

1.Slow Light Transmission in Two-dimension Square Photonic Crystal Waveguide二维正方光子晶体波导中的慢光传输

2.Band Gap Characteristic of Triangular Lattice Waveguide Photonic Crysta in THz Range;三角晶格太赫兹波光子晶体波导的带隙特性

3.Characteristics of Atomic Spontaneous Emission in Photonic Crystal Waveguide光子晶体波导中原子的自发辐射性质

4.Enhancing the emission efficiency in photonic crystal waveguide with coupled waveguide arrays利用耦合波导列提高光子晶体波导辐射

5.Propagating Characteristics and Applications of Parallel Photonic Crystal Waveguides平行光子晶体波导的传输特性及应用

6.Generation of millimeter wave by beat frequency of photonic crystal waveguide directional couplers利用光子晶体波导定向耦合差频产生毫米波

7.Second Harmonic Generation and Effect Factors in Silica Photonic Crystal Waveguide全硅光子晶体波导中二次谐波产生及影响因素

8.The Optical Transmission Characteristics in Two Dimension Photonic Crystal with Part Disorder光在部分无序二维光子晶体波导中的传播特性

9.1×3 Beam Splitter Based on Photonic Crystal Waveguides Directional Coupler光子晶体波导定向耦合型1×3光分束器

10.The Simulation Analysis of Controllable Group-Velocity of Two Dimension Photonic Crystal Waveguides;二维光子晶体波导群速可控特性仿真分析

11.The Study of Transmission Characteristics of Photonic Crystal Waveguide with Dot Defect;含点缺陷的光子晶体波导传输特性的研究

12.Characteristics of Photonic Crystal Fibers、Waveguides and Their Applications;光子晶体光纤和波导的特性及其应用

13.Transmission Characteristics of 2D Wave Photonic Crystal Straight Guide;二维光子晶体直波导传播特性的研究

14.Investigation on Structure Properties of Slow Light in Photonic Crystal Coupled Resonator Optical Waveguide光子晶体耦合腔光波导慢光结构特性研究

15.The Application of Microwave PBG Structure for High-speed Integrated Circuit共面紧凑型微波光子晶体在共面波导中的应用

16.The LiNbO_3: Fe Photorefractive Crystal Write-in Slab WaveguideLiNbO_3:Fe晶体中写入光波导

17.Intrinsic losses of guided modes in photonic crystal slab waveguides光子晶体薄板波导导模的固有损耗特性研究

18.Study on the Properties of Band Gap and Waveguide Slow Light in Two Dimensional Photonic Crystals二维光子晶体带隙及波导慢光特性研究

相关短句/例句

photonic crystal waveguides光子晶体波导

1.The propagating characteristics and mode profiles of three parallelphotonic crystal waveguides are studied by using finite-difference time-domain method,and the coupling coefficient between the parallelphotonic crystal waveguides is obtained with coupled-mode theory.采用时域有限差分法研究三平行光子晶体直波导的传输特性及模场分布,结合耦合模理论计算光子晶体波导的耦合系数。

2.The propagating characteristics and mode profiles of two parallelphotonic crystal waveguides were studied by using finite-difference time-domain method (FDTD),and the coupling coefficient between the two parallelphotonic crystal waveguides was obtained with coupled-mode theory.采用时域有限差分法研究两平行光子晶体波导的传输特性及模场分布,利用耦合模理论计算光子晶体波导的耦合系数。

3)photonic crystals waveguide光子晶体波导

1.Analysis ofphotonic crystals waveguide by FDTD method;光子晶体波导的FDTD分析

2.FDTDArithmetic Programming inphotonic crystals waveguide on the Basis ofMatlab Language;基于Matlab的光子晶体波导仿真研究

4)photonic crystal waveguide光子晶体光波导

1.Because of their excellent characteristics,thephotonic crystal waveguide can be randomly bent,which makes the volume of integrated optical circuit very small.光子晶体光波导由于其优越的光子局域化性能,因此可以实现任意的弯曲,从而大大减小了集成光路的体积。

5)Photonic crystal waveguide gratings光子晶体波导光栅

6)combined wave-guide复合型光子晶体波导

1.Energy transference has been realized by changing the parameters ofcombined wave-guides.在双通道之间引入复合型光子晶体波导 ,通过调节复合型波导的内部参数 ,使其满足一定的条件 ,就可以实现双通道之间能量的完全转移 ,从而实现了光的定向传输 。

延伸阅读

波导通信(见毫米波通信)波导通信(见毫米波通信)wave guide communicationbodao tongxin波导通信(wave guide communieation)见毫米波通信。

本内容不代表本网观点和政治立场,如有侵犯你的权益请联系我们处理。
网友评论
网友评论仅供其表达个人看法,并不表明网站立场。