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Research on the reflection coating at three wavelengths for primary reflector of the optical antenna in the laser communication systems

机译:激光通信系统中光天线初级反射器的三个波长反射涂层的研究

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Primary reflector of the optical antenna is a key component in the space laser communication systems, and multi-wavelengths laser need to be worked in the common aperture. Reflection coating is designed for the primary reflector of a laser communication system, which can work at three wavelengths (633nm, 808nm, 1550nm), the designed target reflectance are R_(633nm)>50%, R_(808nm)>99% and R_(1550nm)>99% at angle of incidence from 0 to 20 deg. We selected Ta_2O_5 and SiO_2 as the high refractive index and low refractive index coating materials, analyzed the impact on the reflection coating of the systemic errors and random errors, and determined the manufacture error of the coater system which can't greater than 1%. The Ion beam sputtering deposition technique was used to manufacture reflection coating for three-wavelengths and a LAMBDA900 spectrophotometer was used to analysis the reflectance at three wavelengths which achieved the design requirements. Finally we give the origin of manufacture error source for this high reflection coating. The reflection coating component was successfully used in the primary reflector of the optical antenna of the laser communication systems.
机译:光学天线的主反射器是空间激光通信系统的关键部件,和多波长激光需要在公用孔加工。反射涂层被设计用于激光通信系统,该系统可以在三个波长(633纳米,808nm的,1550)工作的初级反射器,设计的目标反射率是R_(633纳米)> 50%,R_(808nm的)> 99%和R_ (1550)> 99%在0至20度的入射角。我们选择Ta_2O_5和SiO_2作为高折射率和低折射率的涂层材料,分析了反射的系统误差和随机误差的涂层的影响,并确定了涂布机系统,该系统不能大于1%的制造误差。离子束溅射沉积技术用于制造反射涂层用于三波长和LAMBDA900分光光度计用来分析的反射率在该实现的设计要求三个波长。最后,我们给制造误差源的起源这种高反射涂层。反射涂料组分在激光通信系统的光学天线的主反射器被成功地使用。

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