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Equivalent temperature of nonlinear-optical crystals interacting with laser radiation

机译:非线性光学晶体与激光辐射相互作用的等效温度

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摘要

Temperature calibrated piezoelectric resonances of internal acoustic vibration modes of a nonlinear-optical crystal during its heating by high-power laser radiation are used for noncontact highly accurate measurements of both the non-uniform temperature distribution in the crystal volume and in the surrounding air. A novel notion of equivalent temperature of a crystal heated by laser radiation is introduced in laser physics. The true non-uniform crystal thermodynamic temperature at a given laser power is substituted by the measured equivalent crystal temperature, which is constant at that laser power. Using appropriate laser heating model the measured value of the equivalent crystal temperature allows one to calculate the unknown linear and nonlinear optical absorption coefficients as well as the heat transfer coefficient of the crystal with the surrounding air.
机译:非线性光学晶体在被高功率激光辐射加热期间的内部声学振动模式的温度校准压电谐振用于晶体体积和周围空气中非均匀温度分布的非接触式高精度测量。在激光物理学中引入了通过激光辐射加热的晶体的等效温度的新颖概念。在给定的激光功率下,真正的非均匀晶体热力学温度由测得的等效晶体温度代替,该温度在该激光功率下恒定。使用适当的激光加热模型,等效晶体温度的测量值可以计算未知的线性和非线性光学吸收系数,以及晶体与周围空气的传热系数。

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