英语人>网络例句>polarized 相关的网络例句
polarized相关的网络例句

查询词典 polarized

与 polarized 相关的网络例句 [注:此内容来源于网络,仅供参考]

The method of complex amplitude superposition was adopted, it was derived the intensity of light distribution formula about interference fringe correspondence reflected light or transmission light, thence the effect of stripy visibility and sharpness was studied .when incidence direction of monochromatic light isn't vertical arrow on thin film surface, both reflected light and transmission light were partially polarized light , therefore accurately result need be taken into account polarized character when interference in practical thin film was studied .

采用复振幅叠加方法得到反射光和透射光形成干涉条纹对应光强分布公式,然后研究了多光束干涉对条纹的可见度和锐度的影响。

In order to obtain symmetry and parallel polarized light,the double Wollaston prism is amended. After getting symmetric polarized light at a big splitting beam angle,an ordinary triangular prism is added so that the symmetric light beam can be divided into parallel light beams.

为了获得对称且平行分束的偏振光,对双Wollaston棱镜进行了修正,在获得大分束角的对称偏振光后,配合普通玻璃三棱镜,使对称分束光变成平行分束光,通过改变三棱镜与双Wollaston棱镜间的距离来改变平行光的剪切距离。

In order to obtain symmetry and parallel polarized light, the double Wollaston prism is amended. After getting symmetric polarized light at a big splitting beam angle, an ordinary triangular prism is added so that the symmetric light beam can be divided into parallel light beams. The distance between the triangular prism and the double Wllaston prism is changed so that the distance of the shearing parallel light can be changed.

为了获得对称且平行分束的偏振光,对双wollaston棱镜进行了修正,在获得大分束角的对称偏振光后,配合普通玻璃三棱镜,使对称分束光变成平行分束光,通过改变三棱镜与双wollaston棱镜间的距离来改变平行光的剪切距离。

Apart from this polarizing feature, these glasses serve the same purposes as any dark glasses, absorbing 50% of the incident light; in an unpolarized beam, half the light can be considered as polarized horizontally and half vertically, and only the vertically polarized light is transmitted.

除偏振特色之外,为了同一目的,眼镜可以做成暗色,50%的入射光可以被吸收;在非偏振的入射光,有一半可以认为是水平偏振,另一半认为竖直偏振的。这样仅有竖直偏振光可以传播。

Experimental results show that in asymmetric flat-flat resonators, when the laser crystal′s position is varied relative to two cavity mirrors, the output power changes in different way, and the radially polarized and azimuthally polarized focal lengths are 31.76 m·W, 42.26 m·W measured respectively.

实验结果表明,在非对称平-平腔中,当激光晶体相对于两面腔镜位置不同时,谐振腔输出功率会出现不同的变化趋势,测量出径向热透镜系数为31.76 m·W和切向热透镜系数为42.26 m·W。

Considering the thermal-induced birefringence, the g parameter coordinate system is analyzed, the formulas of radially polarized and azimuthally polarized focal lengths in three different cavity structures are deduced and the proper cavity structure to get the thermal focal length coefficients is presented.

考虑热致双折射效应,利用等效谐振腔的g参数坐标图进行分析,推导了三种不同腔型结构下径向热透镜焦距和切向热透镜焦距系数的计算方法,分析并得出了测量热透镜焦距系数所需的腔型结构。

It is proved that expressions for both linearly polarized and circularly polarized feed sources are completely the same.

为反射面天线尤其是修正卡塞格伦天线的设计和调整提供了理论依据。

The carbonyl group tend to align in the direction of the electric field of the polarized laser, resultantly, the molecular chain were found to tend to align perpendicular to the electric field of the polarized laser, that is to say, the molecular chain inclined to align perpendicular to the direction of LIPSS.

聚酰亚胺分子中的羰基在偏振激光电场的作用下,沿电场方向取向排列,而使整个分子链沿垂直于电场的方向取向排列。

The results of Raman, SEM and EPMA tests show that the microstructure defects of the chalcogenide glasses play an important part in their second-order nonlinear optical properties. The glasses show large SNOP because of Sb2S3 microcrystal or the mental antimony in the glasses even before they were polarized. After the electrical/thermal polarized, GeSbS glasses show larger SNOP with the increase and growth of the microcrystal. The glasses show larger SNOP because of the existence of Sb2S3 microcrystal or the mental antimony in the glasses.

通过研究玻璃的拉曼光谱、扫描电镜和电子探针显微分析后发现,硫系玻璃内部的微结构缺陷对其二阶非线性光学性能有显著影响,玻璃体系内存在的Sb2S3微晶或金属锑颗粒能使硫系玻璃在未经极化处理前就具有较大的二阶非线性光学性能;经电场温度场极化处理后,随着微晶的增多和进一步长大,导致GeSbS玻璃具有更高的非线性光学性能;由于Sb2S3微晶或金属锑的存在,导致玻璃具有较高的二阶非线性光学性能。

The polarizer is the key component in the treating of polarized information and the application of polarized technique. Polarizing prism talent showing itself for its high extinction ratio, good transmittance and powerful optical damage threshold. And from 1960s on, when the first laser appeared, polarizing prism is unsubstituted as an important polarizer in laser polarization technology.

偏光器件是偏光信息处理和偏光技术应用的核心元件;偏光棱镜以其较高的消光比、透射比和较强的抗光损伤能力在众多偏光器件中脱颖而出,特别是上世纪60年代后,随着激光器的诞生,偏光棱镜在激光偏光技术的应用中更是发挥了难以替代的重要作用。

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