ID 原文 译文
41276 为光学波束合成技术在相控阵雷达、电子对抗等领域的应用提供解决方案。 It provides solution for the application of optical beamforming technology in phased array radar, electronic countermeasure and other fields.
41277 基于时域有限差分法(FDTD)在GaN基LED表面分别生长了ZnO柱状与锥状微纳结构, ZnO columnar and cone-shaped micro-nano structures were grown on the surface of GaN-based LEDs by using the finite difference time domain method(FDTD).
41278 并利用Rsoft模拟仿真软件分析了两种结构的几何参量(排列周期p、高度H、底面直径D等)对GaN基LED光提取效率的影响。 The Rsoft simulation software was used to analyze the influence of the geometric parameters of the two structures, such as the arrangement period P, height H, bottom diameter D, etc., on the light extraction efficiency of GaN-based LEDs.
41279 结果表明两种结构均可提高器件的光提取效率,柱状结构在H=0.25μm,p=1.5μm,D=0.9μm时表现最优,其光提取效率是未加任何结构平板LED的5.6倍; The results show that both structures can improve the light extraction efficiency of the device.The columnar structure performs the best when H =0.25μm, P=1.5μm and D=0.9μm, and its light extraction efficiency is 5.6 times that of flat panel LEDs without any structure.
41280 而锥状结构在H=0.6μm,p=1.4μm,D=1.4μm时表现最优,其光提取效率是未加任何结构平板LED的5.3倍。研究结果对高性能GaN基LED的设计与制备具有一定指导意义。 The cone-shaped structure performs the best when H =0.6μm, P=1.4μm, and D=1.4μm, and its light extraction efficiency is 5.3 times that of flat panel LEDs without any structure.
41281 将一种基于磁流体包覆的单模-大芯径多模光纤-单模-单模错位熔接(SMSS)构成的马赫-曾德干涉仪(MZI)和光纤光栅(FBG)相结合, In this paper, a Machzende interferometer(MZI)based on magnetic fluid coated single-mode-large-core multi-mode fiber-single-mode-single-mode dislocation fusion(SMSS)is combined with fiber grating(FBG).
41282 利用磁流体的磁致折变效应和光纤光栅的温度灵敏特性,实现了低成本的温度与磁场双测量。 By taking advantage of the magnetorefractive effect of magnetic fluid and the temperature-sensitive property of fiber grating, the dual measurement of temperature and magnetic field is realized at low cost.
41283 利用光束传播法模拟分析了传感结构的内部光场,确定多模光纤的选型,熔接并制作了传感结构,建立敏感矩阵,实现温度与磁场的同时测量。 The beam propagation method is used to simulate and analyze the internal light field of the sensing structure, determine the selection of multi-mode fiber, fuse and make the sensing structure, establish the sensitive matrix, and realize the simultaneous measurement of temperature and magnetic field.
41284 实验测试结果表明,该传感结构的磁场与温度灵敏度分别为15.9pm/Oe和-161.7pm/℃。 Experimental results show that the magnetic field sensitivity and temperature sensitivity of the sensor structure are 15.9 pm/Oe and-161.7 pm/℃, respectively.
41285 基于压缩感知和单像素成像的基本原理,设计了一种用于图像超分辨率重建的新型深度卷积神经网络架构。 Based on the basic principles of compressed sensing(CS)and single pixel camera imaging, a new deep convolutional neural network architecture for image super-resolution reconstruction is redesigned.