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Study on the temperature gradient evolution of large size nonlinear crystal based on the fluid-solid coupling theory

机译:基于流固耦合理论的大尺寸非线性晶体温度梯度演化研究

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In the non-critical phase-matching (NCPM) along the Θ =90° direction, ADP and DKDP crystals which have many advantages, including a large effective nonlinear optical coefficient, a small PM angular sensitivity and non beam walk-off, at the non-critical phase-matching become the competitive candidates in the inertial confinement fusion(ICF) facility, so the reasonable temperature control of crystals has become more and more important .In this paper, the fluid-solid coupling models of ADP crystal and DKDP crystal which both have anisotropic thermal conductivity in the states of vacuum and non-vacuum were established firstly, and then simulated using the fluid analysis software Fluent. The results through the analysis show that the crystal surface temperature distribution is a ring shape, the temperature gradients in the direction of the optical axis both the crystals are 0.02°C and 0.01°C due to the air, the lowest temperature points of the crystals are both at the center of surface, and the temperatures are lower than 0.09°C and 0.05°C compared in the vacuum and non-vacuum environment, then propose two designs for heating apparatus.
机译:在沿着θ= 90°方向的非关键相位匹配(NCPM)中,ADP和DKDP晶体具有许多优势,包括有效非线性光学系数大,PM角灵敏度小和无光束偏离。非临界相匹配成为惯性约束聚变(ICF)设备的竞争候选者,因此晶体的合理温度控制变得越来越重要。本文研究了ADP晶体和DKDP晶体的流固耦合模型。首先建立了在真空和非真空状态下都具有各向异性热导率的材料,然后使用流体分析软件Fluent对它们进行了模拟。分析结果表明,由于空气是晶体的最低温度点,晶体表面温度分布呈环形,两个晶体在光轴方向上的温度梯度分别为0.02°C和0.01°C。它们都处于表面中心,并且在真空和非真空环境中温度都低于0.09°C和0.05°C,因此提出了两种加热设备设计。

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