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DEEP IMPACT: HIGH-RESOLUTION OPTICAL SPECTROSCOPY WITH THE ESO VLT AND THE KECK I TELESCOPE

机译:深度影响:采用ESO VLT和KECK I望远镜的高分辨率光学光谱

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摘要

We report on observations of comet 9P/Tempel 1 carried out before, during, and after the NASA Deep Impact event (UT July 4), with the optical spectrometers UVES and HIRES mounted on the telescopes Kueyen of the ESO VLT (Chile) and Keck I on Mauna Kea (Hawaii), respectively. A total observing time of about 60 hr, distributed over 15 nights around the impact date, allowed us (1) to find a periodic variation of 1.709 ± 0.009 days in the CN and NH flux, explained by the presence of two major active regions; (2) to derive a lifetime approx > 5 x 10~4 s (at 1.5 AU) for the parent of the CN radical from a simple modeling of the CN light curve after the impact; (3) to follow the gas and dust spatial profiles' evolution during the 4 hr following the impact and derive the projected velocities (400 and 150 m s~(-1), respectively); and (4) to show that the material released by the impact has the same carbon and nitrogen isotopic composition as the surface material (~(12)C/~(13)C = 95 ± 15 and ~(14)N/~(15)N = 145 ± 20).
机译:我们报告了在NASA深度撞击事件(UT 7月4日)之前,之中和之后进行的9P / Tempel 1彗星观测,并在ESO VLT(智利)和凯克望远镜的Kueyen望远镜上安装了分光仪UVES和HIRES。我分别在茂纳基亚(夏威夷)上。大约60小时的总观测时间分布在撞击日期前后的15个晚上,这使我们(1)可以发现CN和NH通量的周期变化为1.709±0.009天,这可以解释为存在两个主要的活动区域。 (2)通过对碰撞后的CN光曲线进行简单建模,得出CN自由基母体的寿命> 5 x 10〜4 s(在1.5 AU下); (3)跟踪撞击后4小时内气体和尘埃的空间分布演变,并推算出预计的速度(分别为400和150 m s〜(-1)); (4)表明撞击释放的物质具有与表面物质相同的碳和氮同位素组成(〜(12)C /〜(13)C = 95±15和〜(14)N /〜( 15)N = 145±20)。

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