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  polarization technique
    The experiments of the image for underwater objects were performed by using a pulsed laser at wavelength 532nm as the light source and the CCD as detector. The circular polarization technique was used to eliminate light scattering from particles in water. The experimental results are analyzed and compared with the linear polarization technique.
    采用波长532nm激光作光源,面阵CCD作探测器,利用圆偏振技术进行水下物体成象实验研究,对实验结果进行了分析并与线偏振成象技术进行了比较结果表明无论是采用圆偏振技术还是线偏振技术都可提高水下物体成象的衬比(度)和成象距离;
短句来源
    Using white light as light source and using CCD as detector, the experiment of circular polarization and line polarization imaging for underwater object has been reported in this paper. By comparing the contrast of image, it is shown that either white light circular polarization technique or white light linear polarization technique can make the image for underwater object very clear and increase the contrast of image.
    采用白炽灯作光源,面阵CCD作探测器,用圆偏振和线偏振技术并且改变光源能量对水下目标进行成像.通过比较图像清晰度表明用自然光照明无论是采用圆偏振技术还是采用线偏振技术都可提高水下目标成像的清晰度和成像距离,且当偏振条件一定时适当提高光源强度能使图像变得更清晰.
短句来源
  polarization technique
    The experiments of the image for underwater objects were performed by using a pulsed laser at wavelength 532nm as the light source and the CCD as detector. The circular polarization technique was used to eliminate light scattering from particles in water. The experimental results are analyzed and compared with the linear polarization technique.
    采用波长532nm激光作光源,面阵CCD作探测器,利用圆偏振技术进行水下物体成象实验研究,对实验结果进行了分析并与线偏振成象技术进行了比较结果表明无论是采用圆偏振技术还是线偏振技术都可提高水下物体成象的衬比(度)和成象距离;
短句来源
    Using white light as light source and using CCD as detector, the experiment of circular polarization and line polarization imaging for underwater object has been reported in this paper. By comparing the contrast of image, it is shown that either white light circular polarization technique or white light linear polarization technique can make the image for underwater object very clear and increase the contrast of image.
    采用白炽灯作光源,面阵CCD作探测器,用圆偏振和线偏振技术并且改变光源能量对水下目标进行成像.通过比较图像清晰度表明用自然光照明无论是采用圆偏振技术还是采用线偏振技术都可提高水下目标成像的清晰度和成像距离,且当偏振条件一定时适当提高光源强度能使图像变得更清晰.
短句来源
  polarization technique
    The experiments of the image for underwater objects were performed by using a pulsed laser at wavelength 532nm as the light source and the CCD as detector. The circular polarization technique was used to eliminate light scattering from particles in water. The experimental results are analyzed and compared with the linear polarization technique.
    采用波长532nm激光作光源,面阵CCD作探测器,利用圆偏振技术进行水下物体成象实验研究,对实验结果进行了分析并与线偏振成象技术进行了比较结果表明无论是采用圆偏振技术还是线偏振技术都可提高水下物体成象的衬比(度)和成象距离;
短句来源
    Using white light as light source and using CCD as detector, the experiment of circular polarization and line polarization imaging for underwater object has been reported in this paper. By comparing the contrast of image, it is shown that either white light circular polarization technique or white light linear polarization technique can make the image for underwater object very clear and increase the contrast of image.
    采用白炽灯作光源,面阵CCD作探测器,用圆偏振和线偏振技术并且改变光源能量对水下目标进行成像.通过比较图像清晰度表明用自然光照明无论是采用圆偏振技术还是采用线偏振技术都可提高水下目标成像的清晰度和成像距离,且当偏振条件一定时适当提高光源强度能使图像变得更清晰.
短句来源
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The electrochromism of polyaniline films, which is prepared by electropolymer-ization from aniline in acidic aqueous solution onto platinum,is investigated in 330-700nm through in-situ ellipsometric technique. The results indicate that the ellipsometric peak of the reduced state(-0. 2V) of the film appears at 390-400nm and the oxidized state(0. 55V) at 500-530nm. The elec-trochromic reaction from the reduced "yellow" state to the oxidized "green" state is suggested via intermediate state whose ellipsometric...

The electrochromism of polyaniline films, which is prepared by electropolymer-ization from aniline in acidic aqueous solution onto platinum,is investigated in 330-700nm through in-situ ellipsometric technique. The results indicate that the ellipsometric peak of the reduced state(-0. 2V) of the film appears at 390-400nm and the oxidized state(0. 55V) at 500-530nm. The elec-trochromic reaction from the reduced "yellow" state to the oxidized "green" state is suggested via intermediate state whose ellipsometric peak appears at 466-470nm.

用现场椭圆偏振技术在330-700nm波长范围内研究了从酸性水溶液中电聚合而成的聚苯胺膜的电变色反应。膜的还原态(-0.2V)在390-400nm、氧化态(0.55V)在500-530nm出现椭圆谱峰;从还原态(黄色)到氧化态(绿色)的电变色反应要经历一个中间态,其谱峰出现在466-470nm。

The polarization pinhole interferomenter is a new practical instrument. It synthesizes the techniques of pinhole diffraction, common light path and polarization technique in its design. It has many advantages, such as the fringe contrast adjustable, nondestructive testing, and strong anti-interference ability. The instrument can be used extensively in various optical element testing and their glue layer testing. The accurace of the fringe pattern analysis is controlled by the fringe sample point numbers.

偏振小孔干涉仪是一种可实用的新型干涉仪。它综合小孔衍射技术、偏振技术和共光路设计为一体,具有条纹对比度可调、抗干扰能力强和非接触检验等优点,可广泛用于各种光学元件及其胶合层的检验。目测精度达1/10λ,计算机条纹处理精度可调。

Ellipsometry is a kind of optical technology used in surface and thin film studies.It is widely used in the fields of physics,chemistry,material science,biology,electronics,mechanical engineering,metallurgy and biomedicine.Because of the development of computer and numerical analysis,ellipsometry was improved rapidly,its application field was spread,and became more practical.Now,a variety of complex structures can be measured by this method.The dispersion relation and the electron energy spectrum of material...

Ellipsometry is a kind of optical technology used in surface and thin film studies.It is widely used in the fields of physics,chemistry,material science,biology,electronics,mechanical engineering,metallurgy and biomedicine.Because of the development of computer and numerical analysis,ellipsometry was improved rapidly,its application field was spread,and became more practical.Now,a variety of complex structures can be measured by this method.The dispersion relation and the electron energy spectrum of material can be studied by means of the spectroscopic ellipsometer with continuous wave length.In this paper,the development and application of ellipsometry as well as its situation in our country are reviewed and discussed.

椭圆偏振测量技术是研究表面和薄膜的一种光学技术。这一技术被广泛应用于物理学、化学、材料、生物、电子、机械、冶金和生物医学等领域。计算机和计算技术的产生与发展加速了椭圆偏振技术的发展,自动化的快速测量扩展了这一技术的应用领域,也使这一技术更为实用化,同时也可对更为复杂的研究对象进行测量;而具有连续波长的椭偏仪的出现以及波长范围的扩展,使能在宽广的波长范围研究物质的色散关系,并能进一步提供对电子能谱结构的了解。本文评述了这一技术的发展和应用,以及我国在这一领域的研究状况

 
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