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Reducing magnetic zero drift by optimizing proportions of neon dual isotopes in laser gyros 被引量:1

Reducing magnetic zero drift by optimizing proportions of neon dual isotopes in laser gyros
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摘要 The relationships among the proportions of the neon dual isotopes ratio, scale factor corrections (SFCs), light intensities, environmental magnetic field and magnetic zero drift are discussed in detail by numerical simulations. The results show that the unification of the optimal operating point (OP) and the frequency stabilization operating point (FSP) is achievable by adjusting the proportions of neon dual isotopes accurately and tuning the cavity length with frequency stabilization system exactly. In that case, the left-rotation and right-rotation gyros can obtain the same SFC, which can decrease the magnetic sensitivity of the laser gyro efficiently. The Zeeman effect zero drift and the Faraday bias zero drift are both reduced by two orders of magnitude, while the magnetic shielding requirement of laser tube is decreased by 1-2 orders of magnitude.
作者 底楠 赵建林
出处 《Optoelectronics Letters》 EI 2012年第2期153-156,共4页 光电子快报(英文版)
基金 supported by the Science Foundation of Aeronautics of China (No.20090853014)
关键词 Frequency stability GYROSCOPES Magnetic fields 比例因子 零点漂移 双同位素 激光陀螺 霓虹灯 优化 最佳工作点 数值模拟
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同被引文献14

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