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近邻星系恒星形成区光谱观测研究 被引量:1
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作者 孔旭 林琳 +10 位作者 李金荣 周旭 邹虎 李弘宇 程福臻 杜薇 范舟 毛业伟 王菁 朱轶楠 周志民 《天文学报》 CSCD 北大核心 2014年第1期29-39,共11页
近年来随着国际8—10iTI口径望远镜数目的不断增加,41TI及以下口径望远镜已成为中小型望远镜.如何利用中、小口径望远镜做出有影响的科学成果,须做到“有所为,有所不为”.为此,自2013年开始针对国家天文台2.16m望远镜推出了重点... 近年来随着国际8—10iTI口径望远镜数目的不断增加,41TI及以下口径望远镜已成为中小型望远镜.如何利用中、小口径望远镜做出有影响的科学成果,须做到“有所为,有所不为”.为此,自2013年开始针对国家天文台2.16m望远镜推出了重点课题支持计划.介绍的“近邻星系恒星形成区光谱观测研究”为2.16rfl望远镜支持的3个重点课题之一.它将利用2.16m望远镜3yr、每年30个暗夜或灰夜的观测时间,开展20个近邻、大星系中多个恒星形成区、平行星系主轴方向和垂直主轴方向的光谱观测,获得一个有显示度的、科学意义重要的近邻星系恒星形成区和径向分布的光谱样本.同时该课题还利用6.5m多镜面望远镜(MMT)的观测时间,开展近邻、特大星系的恒星形成区的光谱观测.利用2.16m望远镜和MMT望远镜观测得到的星系不同区域的光谱数据,结合已有的紫外、光学、红外波段宽带滤光片数据和BATCfBeijing-Arizona-Taiwan.Connecticut)15个中带滤光片数据,可开展星系尘埃消光、恒星形成率、金属丰度和星族特性二维分布等方面的研究;开展星系二维特性和星系形态、星系环境关系的研究.将介绍这个重点课题的科学意义、星系样本的选取、光谱观测策略和星系NGC2403的光谱观测和初步研究结果. 展开更多
关键词 星际介质:尘埃 消光 星系:发射线 星系:运动学与动力学 星系:恒星形成
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Conceptual design of an experiment to study dust destruction by astrophysical shock waves
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作者 M. J.-E. Manuel T. Temim +6 位作者 E. Dwek A. M. Angulo E X. Belancourt R. E Drake C. C. Kuranz M. J. MacDonald B. A. Remington 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2018年第3期9-14,共6页
A novel laboratory experimental design is described that will investigate the processing of dust grains in astrophysical shocks. Dust is a ubiquitous ingredient in the interstellar medium(ISM) of galaxies; however, it... A novel laboratory experimental design is described that will investigate the processing of dust grains in astrophysical shocks. Dust is a ubiquitous ingredient in the interstellar medium(ISM) of galaxies; however, its evolutionary cycle is still poorly understood. Especially shrouded in mystery is the efficiency of grain destruction by astrophysical shocks generated by expanding supernova remnants. While the evolution of these remnants is fairly well understood, the grain destruction efficiency in these shocks is largely unknown. The experiments described herein will fill this knowledge gap by studying the dust destruction efficiencies for shock velocities in the range ~10–30 km/s(μm/ns), at which most of the grain destruction and processing in the ISM takes place. The experiments focus on the study of grain–grain collisions by accelerating small(~1 μm) dust particles into a large(~5–10 μm diameter) population; this simulates the astrophysical system well in that the more numerous, small grains impact and collide with the large population. Facilities that combine the versatility of high-power optical lasers with the diagnostic capabilities of X-ray free-electron lasers, e.g., the Matter in Extreme Conditions instrument at the SLAC National Accelerator Laboratory, provide an ideal laboratory environment to create and diagnose dust destruction by astrophysically relevant shocks at the micron scale. 展开更多
关键词 laboratory astrophysics shock waves dust destruction
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