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The results indicate that the signal contrast of image is increased with the birefringent filter.

实验表明,在光路中加入双折射滤光器,可以显著提高信号光的成像对比度。

It utilized a concave lens to reflect the incident light in lithography process and controls the exposure dosage in photoresist. Micro-pyramid array in photoresist is then developed onto the substrate.

利用凹透镜改变曝光机入射光的角度,控制曝光剂量於光阻中,以成型出四角锥柱微结构,并将其应用在导光板制造技术上。

In the 2×2 electro-optic switch with oblique incidence, the angular separation Δ〓 between the ordinary ray and extraordinary ray can be much greater if the output end interface are properly designed.

在斜入射2×2电光开关中改变出射面的光轴方向,可以使o光和e光的分离角Δ〓更大。

In the course of the calendering, pressure bearing steel strip temperature is too high, the local Polish film flacherie it appropriate to reduce the pressure of the pressure and temperature light; or possibly finish and calendering technology conditions do not match the business card printing and membership card making products for layer on the surface cools, the same as the above band of light, laymch avulsing is poor technical condition so that it matches on, reducing the calender speed, to improve the optical layer on the light that is between the avulsing: same as above.

温度偏高,使制卡和会员卡制作品在压光过程中脱水过多,含水量降低,因而纸张纤维变脆,应降低压光的工作温度,并采取有效措施,保持制卡和会员卡制作品中—定的含水量;压光中压力过大,使制卡和会员卡制作品的延伸性和可塑性降低,韧性变性,可减少压光中的压力;若因为上光油的后加工适性不良,则应重新选择加工适性较好的上光油;后加工工艺条件选样不合适,可调整后加工工艺条件,使其与制卡和会员卡制作品压光后的适性相匹配。

It was found that introducing 15 g/L additive containing 1.5 g saccharin helped to well retard electropolishing-induced corrosion of the electropolished improve the quality of the electropolished moldboard surfaces. At the same time, it was feasible to realize satisfactory precision electropolished of the laser moldboard made of stainless steel at a current density of 20~25 A/dm^2, duration of 1 min, and temperature of 60~65 ℃. The resulting polished moldboard had smooth walls and bright surface, while the corrosion was less than 0.005 mm.

结果表明,添加剂含量在15 g/L时能有效抑制抛光的腐蚀量,提高抛光质量;在精抛光的参数电流密度为20~25 A/dm^2,温度60~65℃,时间1 min条件下,钢片经去毛刺处理和精抛光处理能达到孔壁光滑、腐饮量小于0.005 mm的要求。

When the optical axis is in the plane of incidence,the reflectivity fitting functions of s- and p-polarized light are presented.

通过分析波矢沿任意方向的单轴晶体的折射率,在光轴位于入射面内时,给出了入射光分别为s光和p光的反射率拟合函数。

As the optical diffraction and interference of light revealed the volatility of light polarization phenomenon is that all the optical and electromagnetic wave is transverse wave.

正如光的干涉和衍射现象揭示了光的波动性,光的偏振现象则表明了光及所有电磁波是横波。

The spectroscopic and electrochemical studies suggest the energy structure of this class complex can be easily controlled by modification. With the introduction of electron-donating arylamino groups, the obtained complexes show intense and continuous absorption bands in the region of 250-550nm with strong metal-to-ligand charge transfer dπ(Pt →π* transitions (ε~ 2×104 dm3 · mol-1 · cm-1). Complexes involving the construction of D-π-A type systems also display continuous absorption bands in the region of 400-750nm, rising from the overlapping effect of MLCT and LL'CT bands.

其中,芳胺及其二聚体类修饰基团的引入,使其配合物MLCT吸收谱带的摩尔吸光系数增加,并在250~550nm范围内形成了强的连续吸收;具有D-π-A结构的配合物,由于MLCT吸收谱带和LL'CT吸收谱带的协同效应,导致在400~750nm范围内形成连续吸收;得到了从绿光到深红光的磷光发射系列配合物,并采用真空蒸镀的方法获到了外量子效率分别为5.7%和5.0%的橙光和橙红光多层电致发光器件。

This Father of light together with the light-air and the light-earth, the former with five attributes parallel to his own, and the latter with the five limbs of Breath, Wind, Light, Water, and Fire constitute the Manichan pleroma.

这个父亲的光与光的空气和光的地球,前5个属性平行他自己,后者则与5四肢呼吸急促,风,光,水,火,构成了

Firstly, we investigated the mechanism of material removal and formation of super smooth surface in CMP. And the material removal mechanism of CMP at atomic level was described. The comprehension and hypothesis of material removal mechanism of super smooth surface polishing were enunciated. For instance, we circumstantiated material removal mechanism and formation of super smooth surface in CMP of LBO crystal.

化学机械抛光是超精密加工技术中最重要的方法之一,作者首先调研化学机械抛光的材料去除和超光滑表面形成机理,研究原子级材料去除机理,提出对化学机械抛光材料去除和超光滑表面形成的理解;并以LBO晶体为例详细描述化学机械抛光过程中材料去除和超光滑表面形成。

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