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1)  light transmission
光强透射比
1.
Analysis of the effects of incident angle on light transmission of polarizing prisms;
入射角对偏光棱镜光强透射比的影响分析
2.
The effects of shape, size and orientation of polarized light source on light transmission ratio of an air-spaced analyzer are studied.
探讨了单色线偏振光源的形状、尺寸和取向对检偏棱镜光强透射比的影响 。
2)  transmitted light intensity
透射光强
1.
Studies on optimization problems about transmitted light intensity’s perturbance of the Glan-Taylor prism;
格兰·泰勒棱镜透射光强曲线优化处理的研究
2.
Taking Glan-Taylor prism for example, the reason that the transmitted light intensity perturbs with the rotation angle is analyzed.
以格兰–泰勒棱镜为例,根据实验现象对透射光强随旋转角扰动的原因进行了理论分析。
3.
Based on interference effect at the air-gap cementing layer of Glan-Taylor prism and Glan-Foucault prism,the effect of air-gap polarizing prism on the transmitted light intensity distribution of single-mode Gaussian beam is analyzed.
根据光在格兰泰勒棱镜和格兰傅科棱镜空气隙胶合层中的干涉效应,分析了空气隙偏光棱镜对单模高斯光束光强分布的影响;结果表明:对于某一波长的入射光,当空气隙的厚度一定时,透射光强随光在空气隙介面上入射角的变化作周期性振荡;当入射角一定时,透射光强随空气隙厚度的变化作周期性变化;且透射高斯光束的形状也随光的入射角以及空气隙厚度的改变发生变化;且无论是透射光强的周期性振荡,还是透射高斯光束的形状的变化,格兰泰勒棱镜的影响均小于格兰傅科棱镜;这说明前者的综合性能优于后者。
3)  light intensity transmission
光强透射
1.
Using geometrical model,based on Fresnel formula and multiple beam interference theory,the light intensity transmission formula of Glan-Taylor prisms is obtained,and the effects of the beam\'s incident angle on the inequality of adjacent peaks of the transmitted intensity curve is discussed.
以菲涅耳公式和多光束干涉理论为基础,借助几何模型,得到了格兰-泰勒棱镜的光强透射比公式,讨论了光束入射角对透射光强曲线2个波峰等高性的影响,较好地解释了实验中的非线性误差,给出了改进方向。
4)  luminous transmittance
光透射比
1.
On the basis of the analysis and research about luminous transmittance and the scale number of the filter,this article proposes a solution to the specific definition of the response and holding time.
在对光阀的光透射比和遮光号进行研究的基础上,提出了对响应特性中响应时间和保持时间的精确定义。
5)  transmisivity
光强透射率
1.
The transmisivity and reflectivity for a pile of glassplates are measured, and the experimental data are compared with the theoretial computation.
测量了玻璃片堆的光强透射率和反射率,与推出的两种理论计算值进行了分析比较,指出各理论假设条件与实际物理过程的差异。
6)  Extraordinary optical transmission
超强光透射
补充资料:光谱透射比
分子式:
CAS号:

性质:又称光谱透过率。光通过物体后,从物体透射出的光通量与入射到物体的光通量之比。以符号τ表示。在测量和计算透明物体或溶液的光谱和颜色特性时,常用到这一物理量。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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