激光器放电结构及谐振腔的设计;
超导谐振腔是超导加速器的关键部件。
Superconducting resonator is the important component of a superconducting accelerator.
谐振腔一端为平面反射镜,一端为金属栅网。
用光线矩阵方法研究了两类带有光阑的谐振腔。
Using ray-matrix method we investigated the resonators containing two kinds of apertures.
提出了一种优化设计激光器谐振腔参数的新方法。
A new design method to optimize a laser resonator is presented.
本文采用三种方案实现了无源谐振腔损耗的测量。
Three methods for loss measurement of a passive resonant cavity are involved in this paper.
本文介绍了一种最近研制的自适应激光谐振腔控制器。
This paper introduces a device of adaptive laser resonator controller developed recently.
本文报导了可变反射率镜激光谐振腔的特点和实验结果。
In this paper, the characteristics and experimental results of resonators with a variable reflectivity mirror are presented.
提出了一个谐振腔内微波与等离子体相互作用的简化模型。
A simplified model for microwave plasma interaction in cylindrical cavity resonator is presented.
然后研究谐振腔天线一些参数的对其频带和方向性的影响。
The third part is about the research on the improvement of the directivity of antennas using wire medium.
介绍了一种用于分析轴对称谐振腔的混合阶矢量有限元法。
A kind of mixed-order vector finite element method for axial-symmetric cavities is introduced.
文中给出了加载的谐振腔的并矢格林函数就是其中的一例。
The dyadic Green's function for a dielectric loaded cavity is one of the given examples.
实验结果表明,优化后的热透镜谐振腔具有较高的指向精度。
The experiment shows that the optimized thermal lens resonator has the better pointing stability.
同时,借助激光谐振腔模型对灵感的蕴育过程给以微观解释。
Meanwhile, the microscopic interpretation is given to the breeding process of the inspiration thought.
对于激光系统性能而言,谐振腔最佳透射率具有非常重要的作用。
For the laser system performance, the resonator optimum transmission is of great important.
采用矢量有限元方法计算了任意轴对称谐振腔高阶模的本征频率。
Eigenfrequencies of high order modes in the axial-symmetric cavities are computed with a vector finite element method.
本文给出一种求解缓变截面圆波导型开放式谐振腔的数值计算方法。
A numerical solution for open resonators with slow varying section waveguides is presented in this paper.
用多变量频域稳定性判据,分析了自适应激光谐振腔系统的稳定性。
Using multi variable frequency domain stability criterion, this paper analyzes the stability of the adaptive laser resonator system.
论文工作为进一步设计集成光学陀螺半有源环形谐振腔做好了准备。
Work in this dissertation makes a good foundation for further designing the half-active ring resonators for integrated-optic gyros.
阐述了一种增加线偏振激光输出的新型谐振腔理论分析和实验研究。
A theory analysis and experiment of a novel increase polarized laser output oscillator are reported.
描述了一种用两个激活谐振腔的损耗比较测量超高反射率的有效方法。
An effective methods for measuring ultra high reflectivity by comparing the loss between two active optical resonators is presented.
光波导陀螺谐振腔特性是光波导陀螺谐振腔设计和制备中的关键因素。
Characteristics of ring resonator in integrated optical waveguide gyroscope are key factors in design and fabrication of ring resonator.
与此同时,线形谐振腔引起的空间烧孔效应也有利于抑制均匀展宽效应。
What′s more, the spatial hole burning in linear cavity is propitious to suppress the homogeneous broaden line.
另外,在速调管的计算中,经常会遇到波导加载谐振腔这样的开放系统。
We often have to compute open system like waveguide loaded cavities when simulating klystrons.
本文叙述了用位相调制光外差技术探测光学谐振腔反射特性的原理及实验结果。
The principle and experimental results of phase modulation optical heterodyne detection technique for measuring reflection of optical cavity are described.
本文应用一般型谐振腔的变分方程,推导了平面型谐振腔谐振频率的特征方程。
The variational equation for general resonant cavities is used to derive the characteristic formula for the resonant frequency of the arbitrarily planar reso aators.
对介质加载圆柱谐振腔进行严格分析是进行微波电路设计和微波介电测试的基础。
Rigorous analysis of dielectric-loaded cylindrical resonant cavity is the basis of microwave circuit design and microwave dielectric measurement.
本文提出了用截止波导介质谐振腔测量微波材料相对介电常数和微波损耗的方法。
A method for measuring the dielectric constant and microwave loss of microwave ceramic with cutoff waveguide dielectric resonator is presented.
谐振腔精细度法是通过测量光学谐振腔透射谱线宽度来实现对光学反射镜反射率的测定。
The reflectivity of optical mirrors can be obtained by measuring linewidth of transmission spectrum of optical cavity and the fineness of Fabry-Perot (F-P) cavity.
谐振腔精细度法是通过测量光学谐振腔透射谱线宽度来实现对光学反射镜反射率的测定。
The reflectivity of optical mirrors can be obtained by measuring linewidth of transmission spectrum of optical cavity and the fineness of Fabry-Perot (F-P) cavity.
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