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Investigation Of Thermo-mechanical Behaviour Of Diffractive Optical Elements For Co_2 Lasers

机译:Co_2激光衍射光学元件的热机械行为研究

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Phase diffractive optical elements are at present proposed for use with infrared high power lasers, for material surface treatment applications. However, the heating of the component exposed to several kilowatts per square centimetre can be a problem for practical implementation. The deformations due to thermal expansion of a gold binary diffraction grating under high power CO_2 laser exposure at 10.6 μm are estimated by a Finite Element Method. They are compared to the geometrical tolerances obtained by a rigorous electromagnetic Fourier modal method which is used to calculate the optical performances. Several exposure parameters (duration, average laser power) and grating parameters (period, line space ratio) are investigated. The laser exposure should be limited to a few milliseconds with a power density on the grating of 10~4 W/cm~2, so that the amplitude of the deformations does not exceed the 75 nm tolerance on the grating depth. One is thus assured that the diffraction efficiency in the first order remains superior to 38.5%.
机译:目前提出了用于材​​料表面处理应用的与红外高功率激光器一起使用的相衍射光学元件。然而,对于实际实施而言,暴露于每平方厘米几千瓦的组件的加热可能是一个问题。通过有限元方法估算了在10.6μm高功率CO_2激光照射下金二元衍射光栅的热膨胀引起的变形。将它们与通过严格的电磁傅立叶模态方法获得的几何公差进行比较,该方法用于计算光学性能。研究了几个曝光参数(持续时间,平均激光功率)和光栅参数(周期,线间距比)。激光曝光应限制在几毫秒内,光栅上的功率密度应为10〜4 W / cm〜2,以使变形的幅度不超过光栅深度上的75 nm公差。因此可以确保一级衍射效率保持在38.5%以上。

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