Time-resolved interferometric technique and measurements of the nonlinear refractive index of laser materials

D. Milam, M. Weber
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Abstract

Intensity-dependent changes in the refractive index of optical materials associated with the propagation of intense laser beams cause self-focusing and beam breakup and a resultant loss of focusable energy. For long amplifier chains, such as used in Nd-glass fusion lasers, beam degradation originates in many transmissive elements. These include the lasing medium, lenses, windows, polarizer substrates, Faraday rotators, and nonlinear crystals. The beam degradation is proportional to n2/n(n − 1) for lenses, to n2/n for laser rods, windows, and rotators oriented normal to the beam, and to n2/n2 for laser disks at Brewster’s angle, where n and n2 are, respectively, the linear and nonlinear refractive indices. In all cases low n2 values are desirable. Accurate data on n2 is required for optimum staging of components in high-power laser systems.
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时间分辨干涉技术与激光材料非线性折射率的测量
与强激光光束传播相关的光学材料折射率的强度依赖变化会引起自聚焦和光束破裂,并导致可聚焦能量的损失。对于长放大器链,如用于nd玻璃聚变激光器,光束退化起源于许多传输元件。这些包括激光介质、透镜、窗口、偏振片基片、法拉第旋转器和非线性晶体。对于透镜,光束衰减与n2/n(n−1)成正比,对于垂直于光束的激光棒、窗口和旋转器与n2/n成正比,对于布鲁斯特角的激光盘与n2/n2成正比,其中n和n2分别为线性和非线性折射率。在所有情况下,低的n2值都是可取的。在高功率激光系统中,需要精确的n2数据来优化组件的分级。
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