光电子学

guāng diàn zǐ xué
  • optoelectronics;photoelectronics;optical electronics;optronics
光电子学光电子学
光电子学[guāng diàn zǐ xué]
  1. Si基光电子学研究进展

    The Progresses in The Study on Si based Optoelectronics

  2. Si基光电子学是为顺应二十一世纪以现代光通信和光电子计算机为主的信息科学技术发展需要,在全世界范围内迅速兴起的一个极为活跃的研究前沿。

    Si-based optoelectronics is becoming a very active research area due to its potential applications for optical communications .

  3. 制造大面积超长钨发射体阵列W-UFEA的光电子学方法

    A Optoelectronic Method For Fabricating A Ultra Long Tungsten Field Emitter Array

  4. 用电光晶体来制作的快速光开关、Q开关、光调制器、电光偏转器等器件在现代光电子学和激光技术中有着重要应用。

    The components and the principles of laser treatment instrument of YAG dual wavelength in intelligent Q switch are introduced in this paper .

  5. 资料综合:光纤DNA生物传感器是近年来发展很快的一项新技术,是分子生物学、分析化学、光电子学的交叉技术。

    DATA SYNTHESIS : Optical fiber DNA biosensor is a new developing technology in recent years , and also a crossing technology including molecular biology , analysis chemistry and optoelectronics .

  6. PZT薄膜广泛应用于微电子学、光电子学、微电子机械系统等领域,可作为铁电存储器、传感器、声表面波器件和各种精密仪器控制部分的理想材料。

    PZT has been extensively used in many areas such as microelectronics , optoelectronics and microelectromechanical systems ( MEMS ) .

  7. SiC由于禁带较宽,对可见光和近红外光都不敏感,其光电子学应用因而受到极大限制。

    SiC is a promising semiconductor with wide band gap , however its insensitivity to visible or near infrared light greatly limits its application in optoelectronics .

  8. Si基材料光发射的研究是当前半导体光电子学与光子学中迅速发展起来的一个前沿领域,Si基量子点的光发射是近年来极引人注目的新研究方向。

    The study of Si-based materials light emitting is a new leading field in semiconductor optoelectronics and photonics . The light emitting if Si-based quantum-dot is attractive research direction .

  9. 在对基于SOl材料的光电子学器件应用能力评估中,抗激光损伤能力是其中的一项重要指标。

    Laser induced damage threshold is a property index of quite importance when evaluating the application ability of SOI materials in electronic devices .

  10. 由于ZnO具有独特的力、热、光、电性质,使得它在光学、电子学、光电子学等各领域都有着重要的应用。

    Due to its unique mechanical , thermal , optical and electrical properties , ZnO can be used for versatile applications in optics , electronics , optoelectronics and so on .

  11. 本文介绍了采用DBC板的光电子学封概念布线、制作和应用。

    This paper propose optoelectronic packaging concepts , layout , fabrication and application of using DBC substrates .

  12. GaN短波长激光器是最近取得突破性进展而备受关注的光电子学研究新领域。

    Recently , studies on short wavelength gallium nitride laser diodes have been made with breakthrough progress , and close attention is paid on the new branch of optoelectronics research .

  13. 采用阳极氧化腐蚀的方法制备了多孔硅(PS),这种PS的微结构为纳米量级的,并具有光致发光特性,这无疑将对全硅光电子学的发展具有很大意义。

    Porous silicon ( PS ) has been prepared by anodic oxidation . The microstructure of PS is in the order of nanometer . PS exhibits a characteristic of photoluminescent which may have a great impact on the development of full silicon optoelectronics .

  14. 集成光学的概念是在1969年由美国贝尔实验室的Miller博士提出的,它是在光电子学和微电子学基础上,采用集成方法研究和发展光学器件和混合光学.电子学器件系统的一门新的科学。

    The concept of integrated optics was proposed in 1969 by American Bell Laboratory Dr. Miller . Based on the photoelectronics and microelectronics , the integrated optics is a new science to study and develop optical device and a mix optics-electronics component system used the integration method .

  15. 调研了有机/聚合物光电子学器件在制备技术和应用方面的近期进展。其中包括:电光调制器在CATV、高比特网络、相阵列系统、计算机系统的平行互连等工业领域的应用前景等。

    Recent progresses on O / P material based photonic devices and technologies , were surveyed , it included the application prospect of EO modulators in variety of industries , like CATV , high bitrate network , phased array system , parallel interconnection in computer systems , and so on ;

  16. 扫描近场光学显微术(SNOM)是一种新型纳米尺度结构和信息研究的强有力的光电子学工具,它打破了传统光学衍射极限的限制,分辨率可达到纳米量级。

    Scanning near-field optical microscopy ( SNOM ) is a novel photoelectrical tool for the research down to the nanometer scale . It uses the evanescent field confined at the tiny aperture to provide images of rough surfaces with a resolution beyond the classical optical diffraction limit .

  17. 近来人们对发展硅基光电子学作出了很大的努力。

    Many efforts have been made to develope silicon based optoelectronics .

  18. 它在光电子学、激光器以及光电二极管等方面有重要的应用。

    ZnO has important applications in optoelectronics , laser device and photodiode .

  19. 激光与光电子学的最新进展&2005CLEO/QELS/PhAST联会

    Recent Advances in Lasers and Optoelectronics & 2005 CLEO / QELS / PhAST

  20. 本文综述了硅酸盐材料在光学和光电子学领域的应用。

    The application of silicate materials in optics and optoelectronics has been reviewed .

  21. 信息高科技领域中的半导体光电子学

    Semiconductor Optoelectronics in the Field of Information High Technology

  22. 日本通商产业省的光电子学与光子学研究

    Optoelectronics and Photonics in MITI , Japan

  23. 硒是重要的半导体材料,具有优良的光电性能,可用于太阳能电池、整流器、硒鼓等光电子学领域。硒又是人体必需的微量元素之一,在生命活动中发挥着重要的作用。

    Selenium is an important semiconductor material and a necessary trace element for human body .

  24. 半导体异质结及其在光电子学中的应用&2000年诺贝尔物理奖评述

    The 2000 Nobel Prize for Physics

  25. 集成光电子学联合国家重点实验室

    State Key Laboratory of Integrated Optoelectronics

  26. 半导体量子光电子学的进展

    Developments of Semiconductor Quantum Optoelectronics

  27. 近代光学和光电子学

    Modern Optics and Optoelectronics

  28. 关于光子学与光电子学

    On Photonics and Optoelectronics

  29. 本文综述了近年来微波光电子学中高速光检测器和高速光接收机的进展。

    This paper presents the progress of High-speed photodetector and High-speed Optical Receiver in microwave photonics in recent years .

  30. 微电子学、光电子学和光子学是现代光通信和光传感产业的支柱。

    Microelectronics , optoelectronics and photonics play an important role in the modern optical communication and optical sensor industry .