论文标题

开发机载太阳能望远镜的快速,精确的扫描镜面机制

Development of Fast and Precise Scan Mirror Mechanism for an Airborne Solar Telescope

论文作者

Oba, Takayoshi, Shimizu, Toshifumi, Katsukawa, Yukio, Kubo, Masahito, Kawabata, Yusuke, Hara, Hirohisa, Uraguchi, Fumihiro, Tsuzuki, Toshihiro, Tamura, Tomonori, Shinoda, Kazuya, Kodeki, Kazuhide, Fukushima, Kazuhiko, Fernández, José Miguel Morales, Gómez, Antonio Sánchez, Jimenéz, María Balaguer, Expósito, David Hernández, Gandorfer, Achim

论文摘要

我们开发了一种扫描镜面机制(SMM),该机制可以使基于缝隙的光谱仪或光谱仪精确,快速地映射天文对象。 SMM设计为安装在入口狭缝之前的光路径中,倾斜折叠镜,然后将反射的图像侧向移动,从而在缝隙平面上移动反射镜,从而供应不同的一维图像,以通过光谱设备分散。通常,SMM需要快速而广泛地扫描,同时精确地将缝隙位置放置在整个视野(FOV)上。这些表演对近未实现的观测值高度需求,例如对光球和色球球体的磁性水力动力学的研究。我们的SMM通过安装电磁执行器和基于间隙的电容传感器来实现闭环控制系统。我们的光学测试测量确认,SMM符合以下性能标准:i)在宽扫描范围内($ {\ pm} $ 1005 arcsec),ii)高稳定性(3 $σ$ = 0.1 arcsec)的最高扫描步骤均匀性(线性0.08%)($ {\ pm} $ 1005 arcsec),II),在该范围内,该角度是Septers in III(in III)。 SMM的出色能力将在实际使用中很快证明,通过在气球传播的太阳能天文台上安装近红外光谱仪的机理,以进行第三次发射Sunrise III。

We developed a scan mirror mechanism (SMM) that enable a slit-based spectrometer or spectropolarimeter to precisely and quickly map an astronomical object. The SMM, designed to be installed in the optical path preceding the entrance slit, tilts a folding mirror and then moves the reflected image laterally on the slit plane, thereby feeding a different one-dimensional image to be dispersed by the spectroscopic equipment. In general, the SMM is required to scan quickly and broadly while precisely placing the slit position across the field-of-view (FOV). These performances are highly in demand for near-future observations, such as studies on the magnetohydrodynamics of the photosphere and the chromosphere. Our SMM implements a closed-loop control system by installing electromagnetic actuators and gap-based capacitance sensors. Our optical test measurements confirmed that the SMM fulfils the following performance criteria: i) supreme scan-step uniformity (linearity of 0.08%) across the wide scan range (${\pm}$1005 arcsec), ii) high stability (3$σ$ = 0.1 arcsec), where the angles are expressed in mechanical angle, and iii) fast stepping speed (26 ms). The excellent capability of the SMM will be demonstrated soon in actual use by installing the mechanism for a near-infrared spectropolarimeter onboard the balloon-borne solar observatory for the third launch, Sunrise III.

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