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1)  wavelength dependence loss
波长相关损耗
2)  wavelength minim-loss
波长微损耗
1.
Based on coupling theory,the relations between the attenuation and the changing parameters were analyzed and the wavelength minim-loss was discussed.
基于耦合波理论,分析了衰减量与改变参量之间的关系,讨论了波长微损耗特性。
3)  self-correlative loss
自相关损耗
1.
By introducing the self-correlative loss,the error derived by the power fluctuate of optical source,the variation of transmitted loss and the sensitivity excursio.
通过自相关损耗,可有效消除光纤应变位移传感器中光源功率波动、光纤传输损耗的变化以及光探测器灵敏度的漂移所引起的误差。
4)  wavelength relation
波长相关
1.
Dynamic RWA based wavelength relation in WRON;
WRON中基于波长相关性的波长分配算法
5)  PDL
偏振相关损耗
1.
The PDL(polarization dependent loss) of the VAF(variable attenuation filters) was calculated,and the influence on the PDL due to the coating technology was also analyzed,then the method to reduce PDL was presented.
计算了渐变衰减滤光片的偏振相关损耗,分析了镀膜工艺对偏振相关损耗的影响,提出了降低偏振相关损耗的方法。
2.
We first briefly introduce the commonly used calculation and analysis methods for Polarization-Dependent Losses(PDL) and conduct the analysis and calculation of the PDL of optical devices by using the Polarization Analysis function of ZEMAX.
文章简要介绍了常用的偏振相关损耗(PDL)的计算和分析方法,在此基础上利用ZEMAX软件的POLARIZATION A-NALYSIS(偏振分析)功能对光器件的PDL进行了分析和计算,并且与常用数学软件的计算结果和实际器件的测量结果进行了比较,证明了利用ZEMAX软件模拟计算和分析光器件PDL的可行性和准确性,说明了利用ZEMAX软件不仅可以提高设计人员的工作效率,而且能取得精确的计算和分析结果。
3.
Using the Multiple Important Sampling(MIS) technique,the performances of 10 Gbit/s optical communication systems affected jointly by Polarization-Mode Dispersion(PMD) and Polarization Dependent Loss(PDL) are simulated under different initial pulse chirps and duty cycles.
采用多重重要抽样方法,对受偏振模色散(PMD)和偏振相关损耗(PDL)联合影响的10 Gbit/s光通信系统在不同脉冲初始啁啾和占空比下的性能进行了数值仿真。
6)  polarization dependence loss
偏振相关损耗
1.
Design simulation of high efficiency and low polarization dependence loss infrared grating;
红外波段高效率低偏振相关损耗光栅的设计
补充资料:介质损耗角正切试验(见电容率与损耗因数试验)


介质损耗角正切试验(见电容率与损耗因数试验)
dielectric loss tangent test

)!eZh.sunhooJ一002匕engq一e sh一yon介质损耗角正切试验(dieleetri。1055 tangenttest)见电容率与损耗因数试验。
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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