Rivera Jorge López, Sánchez Marcos Plata, Miridonov Alexei, Stepanov Serguei
CICESE, Carretera Ensenada-Tijuana #3918, Ensenada, B.C., C.P. 22860, Mexico.
Opt Express. 2013 Feb 25;21(4):4280-90. doi: 10.1364/OE.21.004280.
Sagnac fiber interferometer with the dynamic population grating formed in the rare-earth doped fiber is proposed for homodyne adaptive detection of optical phase modulation. The configuration is shown to be a simple all-optical fiber sensor suitable for linear high sensitivity detection of mechanical vibrations, acoustic signals, thermo-optic effect etc. Theoretical consideration shows that the quadratic response of this interferometric configuration associated with the amplitude dynamic grating is observed in the reflected wave mainly, while the recorded phase grating results in the linear energy exchange between the transmitted and reflected from the Sagnac loop light waves. Experiments with the erbium- and ytterbium-doped fiber based adaptive Sagnac configurations (with the operation wavelengths 1485 and 1,064 nm respectively) of the fiber accelerometers confirmed these general conclusions and demonstrated sensitivity of the fiber based interferometric configurations (~3 10⁻⁵ rad/Hz¹/²) governed basically by the noise of the utilized lasers.
提出了一种在掺稀土光纤中形成动态布居光栅的萨格纳克光纤干涉仪,用于光相位调制的零差自适应检测。该结构被证明是一种简单的全光纤传感器,适用于对机械振动、声信号、热光效应等进行线性高灵敏度检测。理论分析表明,这种干涉结构与振幅动态光栅相关的二次响应主要在反射波中观察到,而记录的相位光栅导致萨格纳克环光波的透射光和反射光之间进行线性能量交换。基于掺铒和掺镱光纤的光纤加速度计自适应萨格纳克结构(工作波长分别为1485和1064nm)的实验证实了这些一般结论,并证明了基于光纤的干涉结构的灵敏度(约3×10⁻⁵rad/Hz¹/²)基本上由所用激光器的噪声决定。