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Simulation of pressure induced length change of an optical cavity used for optical pressure standard

机译:用于光学压力标准的光学腔的压力引起的长度变化的模拟

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The National Institute of Metrology (NIM) has constructed a dual optical cavity for the optical pressure standard project. The elastic deformation induced by pressure is investigated by finite element analysis (FEA) simulation. The distortion coefficient, fractional length change per unit pressure, is calculated to be (9.936 ± 0.014)×10SUP?12/SUP/Pa for the measurement channel and (1.49 ~ 1.54)×10SUP?11/SUP/Pa for the reference channel. The gravity-induced deformation is also modelled to evaluate the sensitivity to the low-frequency vibration. The cavity is modelled to be supported symmetrically on four points. With optimized support position, the sensitivity to vertical acceleration reduces to 19 kHz/(m/sSUP2/SUP) at 633 nm.
机译:美国国家计量学院(NIM)为光学压力标准项目建造了一个双光学腔。通过有限元分析(FEA)仿真研究了压力引起的弹性变形。计算通道的变形系数(每单位压力的分数长度变化)为(9.936±0.014)×10 ?12 / Pa和(1.49〜1.54)×10 ?11 / Pa为参考通道。还对重力引起的变形进行了建模,以评估对低频振动的敏感性。模腔被建模为对称地支撑在四个点上。通过优化支撑位置,在633 nm处对垂直加速度的敏感度降低到19 kHz /(m / s 2 )。

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