带轴向光纤探头的多弦光学干涉仪在反场结构中测量电子密度的设计

J. F. Camacho, E. Ruden
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摘要

我们设计了一个工作在633 nm的四弦激光干涉仪系统,该系统将测量由空军研究实验室磁化目标聚变(MTF)实验产生的场反转构型(FRCs)的电子密度。该设计是一个八弦系统的改进版本,以前用于在类似的FRC实验中提供有关电子密度空间分布的时间分辨信息。在目前的系统中,一个扇形的激光束阵列将沿着四个不同的弦穿过FRC背板探测等离子体,并且每个光束相对于参考光束的光学相移将被用来推断线积分电子密度。此外,我们设计的一个新功能将是选择将任何或所有四个探测光束转移到单模光纤中,其准直输出可用于同时探测不同的轴向位置。这种光纤探针束的修改将使我们能够将干涉仪系统的光学工作台放置在与MTF-FRC实验的安全距离上,当进行涉及由Shiva Star电容器组内爆的固体金属衬里压缩等离子体的破坏性测试时。
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Design of a multichord optical interferometer with an axial fiber-optic probe to measure electron density in a field-reversed configuration
We present the design of a four-chord laser interferometer system operating at 633 nm that will measure the electron density of field-reversed configurations (FRCs) produced by the magnetized target fusion (MTF) experiment at the Air Force Research Laboratory. The design is a modified version of an eight-chord system previously used to provide time-resolved information about the spatial distribution of electron density in a similar FRC experiment. With the current system, a fanned array of laser beams will probe the plasma through the FRC midplane along four different chords, and the optical phase shift of each beam relative to a reference beam will be used to infer the line integrated electron density. In addition, a new feature of our design will be the option of diverting any or all of the four probe beams into single-mode optical fibers whose collimated outputs can be used to probe different axial locations simultaneously. This fiber-optic probe beam modification will enable us to place the interferometer system’s optical table at a safe distance from the MTF-FRC experiment when destructive tests involving plasma compression by a solid metal liner imploded by the Shiva Star capacitor bank are attempted.
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