太赫兹辐射

  • 网络Terahertz radiation;thz radiation;terahertz emission
太赫兹辐射太赫兹辐射
  1. 太赫兹辐射(THz)是电磁波谱上最后开发的一个波段。

    Terahertz radiation is the last region of electromagnetic wave spectrum .

  2. 太赫兹辐射(T射线)是电磁光谱研究中最前沿的领域。

    Terahertz radiation is the latest frontier in the electromagnetic spectrum .

  3. 外加电场和磁场对太赫兹辐射产生的影响

    Effect of Applied Electrical and Magnetic Field on THz Radiation

  4. 太赫兹辐射(T射线)在医学未来应用

    Future applications of terahertz radiation ( T-rays ) in medicine

  5. 可变椭圆极化波荡器相干太赫兹辐射的模拟计算

    Simulation of the Coherent THz Radiation from a Variable Elliptically Polarized Undulator

  6. 增益饱和对光学差频产生太赫兹辐射的功率和稳定性的影响

    Effects of gain saturation in terahertz radiation based on difference frequency generation

  7. 实验表明,太赫兹辐射可以穿过这三种纺织物。

    The results show that the terahertz radiation can pass through these materials .

  8. 小孔径光电导天线太赫兹辐射特性的研究

    Study on Terahertz Emission Properties of Small-Aperture Photoconductive Antenna

  9. 其次,在实验中研究了外加静电场和分子排列取向对太赫兹辐射的影响。

    External electric static field and molecular alignment has influence on terahertz wave .

  10. 获得高功率的太赫兹辐射是人们所关注的并不断寻求新的方法。

    People focus on the new methods to generate high power terahertz wave .

  11. 太赫兹辐射对包装材料透射特性的研究

    The transmission of Terahertz radiation to packaging materials Author

  12. 光整流产生太赫兹辐射及核黄素太赫兹时域光谱的研究

    Research on Optical Rectification Generation of Terahertz Radiation and Terahertz Time-domain Spectroscopy of Riboflavin

  13. 对太赫兹辐射具有的高穿透性、高分辨率和反隐身能力进行了研究。

    The high penetration , high resolution and anti-stealth capabilities of terahertz radiation are studied .

  14. 微型真空电子器件和太赫兹辐射源技术进展

    Micro-Vacuum Electron Devices and Terahertz Vacuum Sources

  15. 双光子吸收及泵浦光斑对太赫兹辐射的影响

    The effect of two - photon absorption and optical excitation area on the THz radiation

  16. 太赫兹辐射源与探测器研究进展

    Research progress of terahertz sources and detectors

  17. 介绍了几种常见的太赫兹辐射源和太赫兹的探测器。

    The introductions of several common radiation sources and detectors are also included in this part .

  18. 太赫兹辐射产生技术进展

    Progress in Generation of Terahertz Radiation

  19. 太赫兹辐射和生物分子的相互作用

    Interaction between terahertz radiation and biomolecules

  20. 太赫兹辐射的研究及应用

    Research and Applications of Terahertz Radiation

  21. 基于太赫兹辐射独特的性质,连续太赫兹波计算机层析成像的成功实现为太赫兹成像技术在安检及材料无损检测方面的应用提供了一种更有效的方法。

    THz computed tomography technology will provide a more effective method for non-destructive detection and security inspection .

  22. 太赫兹辐射源作为太赫兹技术的基础,长期以来一直是人们研究的热点。

    As the basis of terahertz technology , terahertz radiation sources are always being the focus people concerning .

  23. 如何获得稳定、实用的太赫兹辐射源是研究太赫兹的关键。

    The key of the study of THz technology is how to get stability , practical terahertz radiation sources .

  24. 我们在国际上率先开展了将太赫兹辐射技术用于中医药学研究的探索,并取得了有意义的实验结果。

    We apply THz techniques in Traditional Chinese Medicine for the first time and obtain some meaningful experimental results .

  25. 提出了太赫兹辐射穿地雷达与穿地遥感的概念设计。

    We provide the conceptual design of the radar and remote sensor which can penetrate the ground with THz radiation .

  26. 太赫兹辐射是一种新型的远红外相干辐射源,近年来在不同的研究领域得到了广泛的应用。

    Terahertz radiation is a newly developed coherent far infrared source , which has been applied in many research fields .

  27. 适用于宽带太赫兹辐射体系的高分子电光材料的研究增益饱和对光学差频产生太赫兹辐射的功率和稳定性的影响

    Study on the Electro-optic Polymers for Broadband Terahertz Generation Effects of gain saturation in terahertz radiation based on difference frequency generation

  28. 介绍了光学方式产生太赫兹辐射的方法和国内外太赫兹源的发展情况。

    Terahertz radiation generated by optical method has been introduced . A detailed summary of terahertz source development is made around home and abroad .

  29. 伴随基于真空电子学的太赫兹辐射源的迅速发展,强流电子光学正面临新的机会和挑战。

    With the rapid development of terahertz radiation source based on vacuum electronics , intense electron optics system is facing new opportunities and challenges .

  30. 随着太赫兹辐射的产生技术和探测技术的发展,它的应用研究也越来越引起科学家们的兴趣。

    Alone with development of the source and detector of terahertz , the interests of the scientists are arisen gradually in the applying research area .