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In-flight performance of the polarization modulator in the CLASP rocket experiment

机译:扣环火箭实验中的偏振调制器的机上性能

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We developed a polarization modulation unit (PMU), a motor system to rotate a waveplate continuously. In polarization measurements, the continuous rotating waveplate is an important element as well as a polarization analyzer to record the incident polarization in a time series of camera exposures. The control logic of PMU was originally developed for the next Japanese solar observation satellite SOLAR-C by the SOLAR-C working group. We applied this PMU for the Chromospheric Lyman - alpha SpectroPolarimeter (CLASP). CLASP is a sounding rocket experiment to observe the linear polarization of the Lyman - alpha emission (121.6 nm vacuum ultraviolet) from the upper chromosphere and transition region of the Sun with a high polarization sensitivity of 0.1 % for the first time and investigate their vector magnetic field by the Hanle effect. The driver circuit was developed to optimize the rotation for the CLASP waveplate (12.5 rotations per minute). Rotation non - uniformity of the waveplate causes error in the polarization degree (i.e. scale error) and crosstalk between Stokes components. We confirmed that PMU has superior rotation uniformity in the ground test and the scale error and crosstalk of Stokes Q and U are less than 0.01 %. After PMU was attached to the CLASP instrument, we performed vibration tests and confirmed all PMU functions performance including rotation uniformity did not change. CLASP was successfully launched on September 3, 2015, and PMU functioned well as designed. PMU achieved a good rotation uniformity, and the high precision polarization measurement of CLASP was successfully achieved.
机译:我们开发了一种偏振调制单元(PMU),电动机系统连续旋转波片。在偏振测量中,连续旋转波形是一个重要的元素以及偏振分析器,用于记录在一系列摄像机曝光的时间序列中的入射极化。 MPU的控制逻辑最初是为下一个日本日本太阳能观察卫星太阳能-C开发的太阳能-C工作组。我们为Chromospheric Lyman - Alpha SpectroproparaImeter(Clasp)应用了这个PMU。 Clasp是一种探测火箭实验,可观察Lyman - α发射(121.6nm真空紫外线)的线性极化,从阳光的上铬圈和过渡区域,首次高偏振敏感性为0.1%,并研究其载体磁性字段由Hanle效果。开发了驱动器电路以优化扣环波片的旋转(每分钟12.5轮)。旋转非均匀性波形导致偏振度(即刻度误差)和Stokes组件之间的串扰中的错误。我们确认PMU在地面测试中具有卓越的旋转均匀性,并且斯托克Q和U的速度误差和串扰小于0.01%。 PMU附加到扣扣仪器后,我们执行了振动测试,并确认了所有PMU功能性能,包括旋转均匀性没有变化。 Clasp于2015年9月3日成功推出,PMU运作良好,设计得很好。 PMU实现了良好的旋转均匀性,并且成功实现了钩子的高精度偏振测量。

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