论文标题
传输光纤的灵敏度内核
Sensitivity kernels for transmission fiber optics
论文作者
论文摘要
基于传输的光纤传感技术为基于散射的分布声感应(DAS)提供了一种替代方案。能够审问数千公里长的纤维,为包括海盆在内的偏远地区的地震学研究开辟了机会。但是,通过平均沿纤维变形,传输系统仅产生集成而不是分布的测量。在这里,我们开发一种形式主义,以使用光相延迟测量值来计算相对于(地球)结构的灵敏度内核。这样,我们证明基于传输的传感可以有效地提供分布式测量,当相位延迟时间序列被剖析到不同的窗口中。可以实现潜在有用的灵敏度覆盖范围的程度,取决于纤维几何形状,特别是其局部曲率。这项工作使用基于传输的光学传感为层析成像倒置和实验设计建立了理论基础。
Fiber-optic sensing technologies based on transmission offer an alternative to scattering-based Distributed Acoustic Sensing (DAS). Being able to interrogate fibers that are thousands of kilometers long, opens opportunities for seismological studies of remote regions, including ocean basins. However, by averaging deformation along the fiber, transmission systems only produce integrated and not distributed measurements. Here we develop a formalism to calculate sensitivity kernels with respect to (Earth) structure, using optical phase delay measurements. With this, we demonstrate that transmission-based sensing can effectively provide distributed measurements when the phase delay time series is dissected into different windows. The extent to which a potentially useful sensitivity coverage can be achieved, depends on the fiber geometry, and specifically on its local curvature. This work establishes a theoretical foundation for both tomographic inversions and experimental design, using transmission-based optical sensing.