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Development of infrared Echelle spectrograph and mid-infrared heterodyne spectrometer on a small telescope at Haleakala, Hawaii for planetary observation

机译:在夏威夷哈莱阿卡拉的小型望远镜上开发红外埃歇尔光谱仪和中红外外差光谱仪,用于行星观测

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We report the development of infrared Echelle spectrograph covering 1-4 micron and mid-infrared heterodyne spectrometer around 10 micron installed on the 60-cm telescope at the summit of Haleakala, Hawaii (alt.=3000m). It is essential to carry out continuous measurement of planetary atmosphere, such as the Jovian infrared aurora and the volcanoes on Jovian satellite Io, to understand its time and spatial variations. A compact and easy-to-use high resolution infrared spectrometer provide the good opportunity to investigate these objects continuously. We are developing an Echelle spectrograph called ESPRIT: Echelle Spectrograph for Planetary Research In Tohoku university. The main target of ESPRIT is to measure the Jovian H3+ fundamental line at 3.9 micron, and H2 nu=l at 2.1 micron. The 256×256 pixel CRC463 InSb array is used. An appropriate Echelle grating is selected to optimize at 3.9 micron and 2.1 micron for the Jovian infrared auroral observations. The pixel scale corresponds to the atmospheric seeing (0.3 arcsec/pixel). This spectrograph is characterized by a long slit field-of-view of ~ 50 arcsec with a spectral resolution is over 20,000. In addition, we recently developed a heterodyne spectrometer called MILAHI on the 60 cm telescope. MILAHI is characterized by super high-resolving power (more than 1,500,000) covering from 7-13 microns. Its sensitivity is 2400 K at 9.6 micron with a MCT photo diode detector of which bandwidth of 3000 MHz. ESPRIT and MILAHI is planned to be installed on 60 cm telescope is planned in 2014.
机译:我们报告了安装在夏威夷Haleakala(海拔= 3000m)山顶的60厘米望远镜上的1-4微米红外红外光谱仪和10微米左右的中红外外差光谱仪的发展情况。必须连续测量行星的大气,例如Jovian红外极光和Jovian卫星Io上的火山,以了解其时间和空间变化。紧凑且易于使用的高分辨率红外光谱仪为连续研究这些物体提供了很好的机会。我们正在开发一种名为ESPRIT的Echelle光谱仪:东北大学用于行星研究的Echelle光谱仪。 ESPRIT的主要目标是在3.9微米处测量Jovian H3 +基本线,在2.1微米处测量H2 nu = 1。使用256×256像素CRC463 InSb阵列。选择合适的Echelle光栅,以针对Jovian红外极光观测在3.9微米和2.1微米处进行优化。像素比例对应于大气可见度(0.3 arcsec /像素)。该光谱仪的特征是〜50 arcsec的长狭缝视场,光谱分辨率超过20,000。此外,我们最近在60厘米望远镜上开发了一种称为MILAHI的外差光谱仪。 MILAHI的特点是覆盖7-13微米的超高分辨率(超过1,500,000)。使用带宽为3000 MHz的MCT光电二极管检测器,它在9.6微米时的灵敏度为2400K。 ESPRIT和MILAHI计划在2014年安装在60 cm望远镜上。

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