Studies of Electric-field-Induced Pockels Effect and Optical Rectification in Silicon 硅材料场致普克尔斯效应和光整流效应的研究
A new method of amplitude stabling for nanosecond laser pulse was proposed based on Pockels effect. 提出了一种基于普克尔效应实现的稳定纳秒级激光脉冲幅度的方法。
Two of new optical methods for measuring electric power utilizing the Faraday's magneto optical effect and the Pockels effect of some transparent materials are proposed. 为了探讨用光学方法测量电力系统中的物理量,根据琼斯矩阵法推出了电光效应与磁光效应组合光调制的公式。
Electro-optic measuring technique is a promising technique based on Pockels effect. 电光检测技术是一种以Pockels效应为基础的新型超快检测技术。
There are Pockels Effect and Faraday Effect in BSO crystal, a beam of polarizer light through BSO crystal will be adjusted by electric field and magnetism field. With the character, a new system is designed in this paper for a material Hall coefficient measurement. 硅酸铋(BSO)晶体具有泡克尔斯效应和法拉第磁光效应,通过BSO晶体的偏振光将受电场和磁场的调制,利用这一特性,设计了一种基于BSO晶体传感器的材料霍尔系数测试系统。
The principle and application of the Pockels effect to electricity measurements are reviewed, with discussions on how to choose the Pockels 'crystal and incident field direction. 文章叙述了泡克耳斯效应在电学测量上的应用,阐述了其测量电场的原理和测量系统,并探讨了为测量所需的电场分量,应如何选择泡克耳斯晶体和电场测定方向。
Correction from the Pockels Effect to the Brillouin Scattering Tensor Pockels效应对布里渊散射张量的修正
An Optical Current Transducer Based on Pockels Effect 一种基于泡克尔斯效应的光学电流传感方法
On Pockels effect in electro-optic crystal and Faraday effect in magneto-optic glass, a new optical electric power sensing system is presented in this paper. 基于电光晶体的泡克尔斯效应和磁光玻璃的法拉第效应,提出一种新颖的光学电功率传感系统。
The fiber-optic sensor based on Pockels effect have an advantage over any electrical and chemical detection method for determining ele-ctric field. 基于Pockels效应的光纤传感器(简称Pockels光纤传感器)用于电场测定具有以往任何电气法和光学法测定无法比拟的优点。
Analyses are reported on theory and design for Pockels components in terms of optical features of Bi4Ge3O12 under electric field effect. 本文从Bi4Ge3O(12)晶体在电场作用下的光学特性入手,对泡克尔斯元件的理论与设计作一些分析。
This passive fiber-optic electric field sensor based on Pockels effect with safty and immunity to the electromagnetic interference has some applications in the measurements under adverse circumstances as well as in the control and protection. 从不受电磁干扰影响和安全性出发,建立在Pockels效应基础上的无源光纤电场传感器,在恶劣的电气环境下的测量、控制和防护等方面具有极大意义。
The entire research subject is to research and develop an fiber-optic current and voltage measure system based on Faraday effect and Pockels effect against the background of the control system of the Dagang Oil Field's oil pumping equipment& high voltage great power frequency converter. 本课题以大港油田抽油设备的控制装置&高压变频器为背景,研究开发了一套基于法拉第旋光效应及泡克尔斯效应的光纤电流电压检测系统。
Application of the Pockels effect to electricity measurement 泡克耳斯效应在电学测量上的应用
In this system, we monitor over-voltage by optical voltage sensor. Optical voltage sensor is a new kind of voltage measuring appliance, which measure voltage by crystal electro optic effect ( Pockels effect) and transmit data through optical fiber. 系统的传感器采用光纤电压传感器,该传感器是利用具有Pockels效应的BGO晶体(Bi4Ge3O12)作为传感头来感受电压变化,光纤作为光信号的传输介质的一种新型电压测量装置。
The meter measures voltage by using Pockels optoelectronic effect principle of BGO crystal. It uses light as sensing information and optic fiber as transmission media. The optical signals are transferred by optoeletronic converter and then processed by 8098 single chip computer. 该仪器是根据BGO晶体的Pockels电光效应原理来测量电压的,它用光作为敏感信息,由光导纤维来传递,光信号经光电变换器变成电信号,由8098单片机进行处理。
Composite Optical Modulation of Pockels Effect with Faraday Effect and Application 泡克耳斯效应与法拉第效应组合光调制的应用
Measuring surface discharge charge distribution on insulation films by reflection method of Pockels effect 普克尔斯效应反射法测量绝缘膜表面放电电荷的分布
Electric-optic effect voltage measurement system is designed based on Pockels high-voltage measurement methods. 采用基于Pockels效应的高压电场测量方法,建立了电光效应电压测量系统。
Optical Pockels Effect and Its Realization Conditions 光频普克尔斯(Pockels)效应及实现条件
Pockels Effect in GaAs caused by Two-beam Coupling GaAs双光束耦合中的普克尔效应
The optical voltage transformer ( OVT) based on Pockels effect of Bi4Ge3O12 crystal is developed. The structure of OVT and the principle of sensor are described in this paper. 开发了基于Bi4Ge3O12晶体的Pockels电光效应的光学电压互感器(OVT),阐述了OVT的结构设计、传感头的工作原理及其结构。
In order to pick a single bunch from multi-bunch, the pulse picking system based on Pockels effect is developed that is an effective means for the Bunch-by-Bunch measurements, the observation of beam instability and potential well distortions. 为了实现从运行的多束团中选取单个束团的功能,提出基于普克尔斯效应设计了光脉冲选取系统,为实现逐束团测量、准确观测束流不稳定性和束流势阱扭曲提供了有效手段。