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The reflective properties of a volume Bragg grating exposed to a high power laser beam

机译:体积布拉格光栅在高功率激光束下的反射特性

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The material in which a volume Bragg grating is made will always have some absorption at the grating's design wavelength. Thus, when exposed to a high power laser beam the grating will absorb some power, be heated such that a temperature gradient is formed and, consequently, become distorted. We developed an accurate model to calculate the reflection of a high power laser beam by a volume Bragg grating that experiences such distortion. We used the beam propagation method (BPM) to calculate the laser beam propagation in the grating numerically, and the BPM calculations are iterated to account for the counter propagation of the laser beam in the volume Bragg grating. We devised a new method to assure convergence in the iteration of the BPM calculations when the grating diffraction strength is very large. We also established a new formulation of the wave equation to include the grating period distortion in the BPM formulation. The surface distortion and temperature induced background index change are also included in the model. This model has been validated to be correct and very accurate. We applied it to calculate the reflection of a high power laser beam by a distorted volume Bragg grating which has large diffraction strength. Our calculation shows that a small amount of grating structure distortion could introduce significant changes of both the phase and intensity patterns of the reflected laser beam. Understanding such changes is critical to the application of volume Bragg grating to high power laser systems.
机译:制成体积布拉格光栅的材料将始终在光栅的设计波长处具有一定的吸收率。因此,当暴露于高功率激光束时,光栅将吸收一些功率,被加热使得形成温度梯度并且因此变得失真。我们开发了一种精确的模型,可以计算发生这种变形的体积布拉格光栅对大功率激光束的反射。我们使用光束传播方法(BPM)来数值计算激光束在光栅中的传播,然后对BPM计算进行迭代以解决体积布拉格光栅中激光束的反向传播。当光栅衍射强度很大时,我们设计了一种新方法来确保BPM计算迭代中的收敛性。我们还建立了波动方程的新公式,以将光栅周期失真包括在BPM公式中。该模型还包括表面变形和温度引起的背景指数变化。该模型已被验证为正确且非常准确。我们将其用于计算具有大衍射强度的扭曲体积布拉格光栅对高功率激光束的反射。我们的计算表明,少量的光栅结构畸变会引起反射激光束的相位和强度模式的重大变化。了解这种变化对于将体积布拉格光栅应用于高功率激光系统至关重要。

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