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Sunrise Chromospheric Infrared spectroPolarimeter (SCIP) for SUNRISE Ⅲ: Polarization Modulation Unit

机译:日出Ⅲ:偏振调制单元的日出曲线红外光谱磁点(SCIP)

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Polarization measurements of the solar chromospheric lines at high precision arc key to present and future solar telescopes for understanding magnetic field structures in the chromosphere. The Sunrise Chromospheric Infrared spectroPolarimeter (SCIP) for SUNRISE Ⅲ is a spcctropolarimcter with a polarimetric precision of 0.03 % (1 σ). The key to high-precision polarization measurements using SCIP is a polarization modulation unit that rotates a waveplatc continuously at a constant speed. The rotating mechanism is a DC brushless motor originally developed for a future space mission, and its control logic was originally developed for the sounding rocket experiment CLASP. Because of our requirement on a speed of rotation (0.512 s/rotation) that was 10 times faster than that of CLASP, we optimized the control logic for the required faster rotation. Fast polarization modulation is essential for investigating the fine-scale magnetic field structures related to the dynamical chromospheric phenomena. We have verified that the rotation performance can achieve the polarization precision of 0.03 % (1 σ) required by SCIP and such a significant rotation performance is maintained under thermal vacuum conditions by simulating the environment of the SUNRISE Ⅲ balloon flight. The waveplate was designed as a pair of two birefringent plates made of quartz and sapphire to achieve a constant retardation in a wide wavelength range. We have confirmed that the retardation is almost constant in the 770 nm and 850nm wavelength bands of SCIP under the operational temperature conditions.
机译:高精度弧形钥匙的太阳能辐射线的极化测量和未来的太阳能望远镜,了解铬圈中的磁场结构。日出的日出曲线Ⅲ用于日出Ⅲ是Spcctroporarimcter,极性精度为0.03%(1σ)。使用SCIP的高精度偏振测量的关键是偏振调制单元,其以恒定速度连续地旋转波形。旋转机构是最初为未来空间任务开发的直流无刷电机,其控制逻辑最初是为探测火箭实验扣开发的。由于我们对旋转速度的要求(0.512 S /旋转)的速度比扣环快10倍,我们优化了所需的更快旋转的控制逻辑。快速偏振调制对于研究与动态致动系现象有关的微量磁场结构至关重要。我们已经验证了旋转性能可以通过芯片达到0.03%(1σ)的偏振精度,通过模拟日出Ⅲ气球飞行的环境,在热真空条件下保持这种显着的旋转性能。波片被设计为由石英和蓝宝石制成的一对双向板,以在宽波长范围内实现恒定延迟。我们已经证实,在操作温度条件下,延迟在770nm和850nm波长带中的延迟几乎是恒定的。

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