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Science with the 2.5-meter Wide Field Survey Telescope(WFST) 被引量:6
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作者 Tinggui Wang Guilin Liu +59 位作者 Zhenyi Cai Jinjun Geng Min Fang haoning he Ji-an Jiang Ning Jiang Xu Kong Bin Li Ye Li Wentao Luo Zhizheng Pan Xuefeng Wu Ji Yang Jiming Yu Xianzhong Zheng Qingfeng Zhu Yi-Fu Cai Yuanyuan Chen Zhiwei Chen Zigao Dai Lulu Fan Yizhong Fan Wenjuan Fang Zhicheng he Lei Hu Maokai Hu Zhiping Jin Zhibo Jiang Guoliang Li Fan Li Xuzhi Li Runduo Liang Zheyu Lin Qingzhong Liu Wenhao Liu Zhengyan Liu Wei Liu Yao Liu Zheng Lou Han Qu Zhenfeng Sheng Jianchun Shi Yiping Shu Zhenbo Su Tianrui Sun Hongchi Wang Huiyuan Wang Jian Wang Junxian Wang Daming Wei Junjie Wei Yongquan Xue Jingzhi Yan Chao Yang Ye Yuan Yefei Yuan Hongxin Zhang Miaomiao Zhang Haibin Zhao Wen Zhao 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2023年第10期155-202,共48页
The Wide Field Survey Telescope(WFST) is a dedicated photometric surveying facility being built jointly by University of Science and Technology of China(USTC) and the Purple Mountain Observatory(PMO). It is equipped w... The Wide Field Survey Telescope(WFST) is a dedicated photometric surveying facility being built jointly by University of Science and Technology of China(USTC) and the Purple Mountain Observatory(PMO). It is equipped with a 2.5-meter diameter primary mirror, an active optics system, and a mosaic CCD camera with 0.73 gigapixels on the primary focal plane for highquality image capture over a 6.5-square-degree field of view. The installation of WFST near the summit of Saishiteng mountain in the Lenghu region is scheduled in summer of 2023, and the operation is planned to start three months later. WFST will scan the northern sky in four optical bands(u, g, r and i) at cadences from hourly/daily in the deep high-cadence survey(DHS) program, to semi-weekly in the wide field survey(WFS) program. During a photometric night, a nominal 30 s exposure in the WFS program will reach a depth of 22.27, 23.32, 22.84, and 22.31(AB magnitudes) in these four bands, respectively, allowing for the detection of a tremendous amount of transients in the low-z universe and a systematic investigation of the variability of Galactic and extragalactic objects. In the DHS program, intranight 90 s exposures as deep as 23(u) and 24 mag(g), in combination with target of opportunity follow-ups, will provide a unique opportunity to explore energetic transients in demand for high sensitivities, including the electromagnetic counterparts of gravitational wave events, supernovae within a few hours of their explosions,tidal disruption events and fast, luminous optical transients even beyond redshift of unity. In addition, the final 6-year co-added images, anticipated to reach g■25.8 mag in WFS or 1.5 mags deeper in DHS, will be of fundamental importance to general Galactic and extragalactic science. The highly uniform legacy surveys of WFST will serve as an indispensable complement to those of the Vera C. Rubin Observatory's Legacy Survey of Space and Time(LSST) that monitors the southern sky. 展开更多
关键词 optical telescope time domain astronomy photometric survey SUPERNOVAE multi-messenger events tidal disruption event
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穿越星际的信使
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作者 贺昊宁 吴雪峰 《科学通报》 EI CAS CSCD 北大核心 2019年第22期2265-2269,共5页
宇宙射线为来自太空的高能带电粒子,于1912年首次由Hess博士发现.尽管已经被发现了超过100年,宇宙射线的产生机制及来源至今仍未被确认,这成为超过一个世纪以来高能天体物理领域的最大谜题之一.研究宇宙射线起源的一个难点是,宇宙射线... 宇宙射线为来自太空的高能带电粒子,于1912年首次由Hess博士发现.尽管已经被发现了超过100年,宇宙射线的产生机制及来源至今仍未被确认,这成为超过一个世纪以来高能天体物理领域的最大谜题之一.研究宇宙射线起源的一个难点是,宇宙射线在宇宙中传播时,受到银河系内或银河系外磁场作用发生偏转,因而从地球上观测到的宇宙射线方向已经偏离了最初源的方向. 展开更多
关键词 宇宙射线 信使 星际 高能带电粒子 高能天体物理 磁场作用 银河系
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