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1)  electrooptic coefficient
电光系数<光>
2)  electro-optic coefficient
电光系数
1.
In this paper,all of the electro-optic coefficients of β-BBO single crystal have been measured by the interferometric method.
用干涉法测量了β-BBO晶体的电光系数:γ22=2。
2.
After poling,the electro-optic coefficient was measured to be 4.
极化处理后的样品具有较好的电光特性,采用Mach-Zehnder干涉仪测量系统测得样品在1550nm处电光系数为4。
3.
The half-wave voltage and the corresponding electro-optic coefficient γ_ 11 are determined by the extreme method as well as the double frequency method.
利用极值法和倍频法测定了硅酸镓镧晶体的半波电压值,计算出电光系数γ11分别为1。
3)  electro optic coefficient
电光系数
1.
In this paper,all of the electro optic coefficients of the low symmetrical crystal GdCa 4O(BO 3) 3 have been measured by the interferometric method.
用干涉法测量了低对称晶体 Gd Ca4 O(BO3) 3的全部电光系数。
2.
The linear electro optic coefficient (Pockels coefficient) of the composite thin film was measured by the simple transmission technique.
制备了掺杂型纳米晶聚合物钛酸铅聚醚醚酮 (PbTiO3 PEK c)复合薄膜 ,采用简单透射技术测量了该复合薄膜的线性电光系数 ,并研究了该复合薄膜的电光特性的弛豫过
3.
A simple interferometric method for measuring the linear electro optic coefficients of poled polymer films is described.
报道了一种测量聚合物薄膜电光系数的简单方法。
4)  electrooptic coefficient
电光系数
1.
By using the multiple carrier model and uniaxial symmetry and photoinduced mechanisms, the relationships of electrooptic coefficient γ with the distance d of D fiber, poling time t and applied voltage V in the silica fiber after the thermal/electric field poling (TEFP) are theoretically calculated.
利用多载流子模型及单轴对称和光激励机理 ,从理论上计算了经热及电场诱导后的石英光纤的电光系数γ与D型光纤的距离d、诱导时间t和外加电压V的关系。
2.
in this paper, an ellipsometry technique for measuring poled polymer electrooptic coefficients is studied.
研究了利用椭偏技术进行极化聚合物电光系数测量的方法。
5)  electro optic coefficients
电光系数
1.
The energy transfer direction of CTWM depends not only on the orientation of the crystal caxis and the sign of the light induced carriers,but also on the electro optic coefficients.
相向二波耦合能量转移方向不仅依赖晶体中光生载流子的电荷符号及入射光与晶体c轴相对取向,而且依赖于晶体电光系数各分量的相对大小。
6)  photoelectric coefficient
光电系数
补充资料:摩尔吸光系数

molar absorptivity

根据比尔定律,吸光度a与吸光物质的浓度c和吸收池光程长b的乘积成正比。当c的单位为g/l,b的单位为cm时,则 a = abc,比例系数a称为吸收系数,单位为l/g.cm;当c的单位为mol/l,b的单位为cm时,则 a = εbc,比例系数ε称为摩尔吸收系数,单位为l/mol.cm,数值上ε等于a与吸光物质的摩尔质量的乘积。它的物理意义是:当吸光物质的浓度为1 mol/l,吸收池厚为1cm,以一定波长的光通过时,所引起的吸光度值a。ε值取决于入射光的波长和吸光物质的吸光特性,亦受溶剂和温度的影响。显然,显色反应产物的ε值愈大,基于该显色反应的光度测定法的灵敏度就愈高。

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