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The Design of GECAM Scientific Ground Segment
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作者 Shijie Zheng Liming Song +39 位作者 Xiang Ma Ping Wang Rui Qiao Yue Huang Xiaoyun Zhao Hongmei Zhang Xiaobo Li mingyu ge Gang Chen Gongxing Sun Wenxi Peng Ce Cai Wei Chen Yanqi Du Dongya Guo Bing Li Chaoyang Li Jianhui Li Qingxin Li Jing Liang Jiacong Liu ge Ou Dongli Shi Jingyan Shi Xinying Song Jin Wang Wenshuai Wang Hong Wu Shuo Xiao Wangchen Xue Min Yao Jianying Ye Kai Zhang Peng Zhang Xiaolu Zhang Yanqiu Zhang Guoying Zhao Shiyi Zhao Chao Zheng Shaolin Xiong 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2024年第10期1-10,共10页
The Gravitational wave burst high-energy Electromagnetic Counterpart All-sky Monitor(GECAM)is a dedicated mission for monitoring high-energy transients.Here we report the design of the GECAM Scientific Ground Segment(... The Gravitational wave burst high-energy Electromagnetic Counterpart All-sky Monitor(GECAM)is a dedicated mission for monitoring high-energy transients.Here we report the design of the GECAM Scientific Ground Segment(GSGS)in terms of the scientific requirements,including the architecture,the external interfaces,the main function,and workflow.Judging from the analysis and verification results during the commissioning phase,the GSGS functions well and is able to monitor the status of the payloads,adjust the parameters,develop the scientific observation plans,generate the scientific data products,analyze the data,etc.Thus,the on-orbit operation and scientific researches of GECAM are guaranteed. 展开更多
关键词 gravitational waves gamma-rays:general telescopes
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Search for Short-timescale Variations in Magnetar Polarization Degree
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作者 Wei Chen mingyu ge +6 位作者 Fei Xie Wei Deng Wenhao Wei Chao Zuo Kuan Liu Fabio La Monaca Alessandro Di Marco 《Research in Astronomy and Astrophysics》 2025年第9期188-199,共12页
In this work,we searched for short-timescale variations of polarizations in five magnetars observed by the Imaging X-ray Polarimetry Explorer.Only 4U 0142+61 showed an indication of variations of polarization degree(P... In this work,we searched for short-timescale variations of polarizations in five magnetars observed by the Imaging X-ray Polarimetry Explorer.Only 4U 0142+61 showed an indication of variations of polarization degree(PD),with the significance of 3.0σbetween the highest and lowest PDs,though no significant changes were observed in the polarization angle and emission features during this process.1RXS J170849.0−40091,SGR 1806−20,1E 2259+586 and 1E 1841−045 remained stable within the error ranges.To verify these results,we also performed simulations assuming constant polarization over their observation period.The results indicated that the probability of the detected PD of 4U 0142+61,being due to statistical fluctuations is only 5.8%.However,we cannot rule out the possibility of statistical fluctuations for 4U 0142+61,if the observed PD variation is indeed a real physical phenomenon,which would be necessary to be confirmed in future observations. 展开更多
关键词 STARS magnetars-polarization-X-rays STARS
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Observatory science with eXTP
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作者 Ping Zhou Jirong Mao +97 位作者 Liang Zhang Alessandro Patruno Enrico Bozzo Yanjun Xu Andrea Santangelo Silvia Zane Shuangnan Zhang Hua Feng Yuri Cavecchi Barbara de Marco Junhui Fan Xian Hou Pengfei Jiang Patrizia Romano Gloria Sala Lian Tao Alexandra Veledina Jacco Vink Song Wang Junxian Wang Yidi Wang Shanshan Weng Qingwen Wu Fei Xie Guobao Zhang Jin Zhang Zhanhao Zhao Shijie Zheng Samuzal Barua Yuehong Chen Yupeng Chen Shijiang Chen Liang Chen Yongyun Chen Xin Cheng Yiheng Chi Lang Cui Domitilla de Martino Wei Deng Lorenzo Ducci Ruben Farinelli Fabo Feng mingyu ge Minfeng Gu Hengxiao Guo Dawei Han Xinke Hu Yongfeng Huang Jean in’t Zand Long Ji Jialai Kang Yves Kini Panping Li Zhaosheng Li Kuan Liu Jiren Liu Jieying Liu Ming Lyu Alessio Marino Alex Markowitz Mar Mezcua Matt Middleton Guobin Mou C.-Y.Ng Alessandro Papitto Zhiyuan Pei Jingqiang Peng Juri Poutanen Qingcang Shui Scaringi Simone Yang Su Ying Tan Xilu Wang Pengju Wang Di Wang Fayin Wang Junfeng Wang Mengye Wang Yusong Wang Jiancheng Wu Hubing Xiao Dingrong Xiong Xiaojie Xu Rui Xue Zhen Yan Ming Yang Chuyuan Yang Wenxin Yang Wentao Ye Zhuoli Yu Yuhai Yuan Xiao Zhang Lixia Zhang Shujie Zhao Qingchang Zhao Yonggang Zheng Wei Zheng Wenwen Zuo 《Science China(Physics,Mechanics & Astronomy)》 2025年第11期168-212,共45页
Scheduled for launch in 2030,the enhanced X-ray Timing and Polarization(eXTP)telescope is a Chinese space-based mission aimed at studying extreme conditions and phenomena in astrophysics.eXTP will feature three main p... Scheduled for launch in 2030,the enhanced X-ray Timing and Polarization(eXTP)telescope is a Chinese space-based mission aimed at studying extreme conditions and phenomena in astrophysics.eXTP will feature three main payloads:Spectroscopy Focusing Array(SFA),Polarimetry Focusing Array(PFA),and a Wide-field Camera(W2C).This white paper outlines observatory science,incorporating key scientific advances and instrumental changes since the publication of the previous white paper.We will discuss perspectives of eXTP on the research domains of flare stars,supernova remnants,pulsar wind nebulae,cataclysmic variables,X-ray binaries,ultraluminous X-ray sources,active galactic nucleus(AGN),and pulsar-based positioning and timekeeping. 展开更多
关键词 X-ray astronomy X-ray polarimetry STARS supernova remnants pulsar wind nebulae cataclysmic variables X-ray binaries ultraluminous X-ray sources active galactic nuclei
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Science objectives of the Einstein Probe mission
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作者 Weimin Yuan Lixin Dai +93 位作者 Hua Feng Chichuan Jin Peter Jonker Erik Kuulkers Yuan Liu Kirpal Nandra Paul O’Brien Luigi Piro Arne Rau Nanda Rea Jeremy Sanders Lian Tao Junfeng Wang Xuefeng Wu Bing Zhang Shuangnan Zhang Shunke Ai Johannes Buchner Esra Bulbul Hechao Chen Minghua Chen Yong Chen Yu-Peng Chen Alexis Coleiro Francesco Coti Zelati Zigao Dai Xilong Fan Zhou Fan Susanne Friedrich He Gao Chong ge mingyu ge Jinjun geng Giancarlo Ghirlanda Giulia Gianfagna Lijun Gou Sebastien Guillot´ Xian Hou Jingwei Hu Yongfeng Huang Long Ji Shumei Jia S.Komossa Albert K.H.Kong Lin Lan An Li Ang Li Chengkui Li Dongyue Li Jian Li Zhaosheng Li Zhixing Ling Ang Liu Jinzhong Liu Liangduan Liu Zhu Liu Jiawei Luo Ruican Ma Pierre Maggi Chandreyee Maitra Alessio Marino Stephen Chi-Yung Ng Haiwu Pan Surangkhana Rukdee Roberto Soria Hui Sun Pak-Hin Thomas Tam Aishwarya Linesh Thakur Hui Tian Eleonora Troja Wei Wang Xiangyu Wang Yanan Wang Junjie Wei Sixiang Wen Jianfeng Wu Ting Wu Di Xiao Dong Xu Renxin Xu Yanjun Xu Yu Xu Haonan Yang Bei You Heng Yu Yunwei Yu Binbin Zhang Chen Zhang Guobao Zhang Liang Zhang Wenda Zhang Yu Zhang Ping Zhou Zecheng Zou 《Science China(Physics,Mechanics & Astronomy)》 2025年第3期1-60,共60页
The Einstein Probe(EP)is an interdisciplinary mission of time-domain and X-ray astronomy.Equipped with a wide-field lobstereye X-ray focusing imager,EP will discover cosmic X-ray transients and monitor the X-ray varia... The Einstein Probe(EP)is an interdisciplinary mission of time-domain and X-ray astronomy.Equipped with a wide-field lobstereye X-ray focusing imager,EP will discover cosmic X-ray transients and monitor the X-ray variability of known sources in 0.5-4 keV,at a combination of detecting sensitivity and cadence that is not accessible to the previous and current wide-field monitoring missions.EP can perform quick characterisation of transients or outbursts with a Wolter-I X-ray telescope onboard.In this paper,the science objectives of the EP mission are presented.EP is expected to enlarge the sample of previously known or predicted but rare types of transients with a wide range of timescales.Among them,fast extragalactic transients will be surveyed systematically in soft X-rays,which includeγ-ray bursts and their variants,supernova shock breakouts,and the predicted X-ray transients associated with binary neutron star mergers.EP will detect X-ray tidal disruption events and outbursts from active galactic nuclei,possibly at an early phase of the flares for some.EP will monitor the variability and outbursts of X-rays from white dwarfs,neutron stars and black holes in our and neighbouring galaxies at flux levels fainter than those detectable by the current instruments,and is expected to discover new objects.A large sample of stellar X-ray flares will also be detected and characterised.In the era of multi-messenger astronomy,EP has the potential of detecting the possible X-ray counterparts of gravitational wave events,neutrino sources,and ultra-high energyγ-ray and cosmic ray sources.EP is expected to help advance the studies of extreme objects and phenomena revealed in the dynamic X-ray universe,and their underlying physical processes.Besides EP's strength in time-domain science,its follow-up telescope,with excellent performance,will also enable advances in many areas of X-ray astronomy. 展开更多
关键词 Einstein Probe X-ray astronomy X-ray telescopes time-domain astronomy transients VARIABILITY
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Physics of strong magnetism with eXTP
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作者 mingyu ge Long Ji +47 位作者 Roberto Taverna Sergey Tsygankov Yanjun Xu Andrea Santangelo Silvia Zane Shuang-Nan Zhang Hua Feng Wei Chen Quan Cheng Xian Hou Matteo Imbrogno Gian Luca Israel Ruth Kelly Ling-Da Kong Kuan Liu Alexander Mushtukov Juri Poutanen Valery Suleimanov Lian Tao Hao Tong Roberto Turolla Weihua Wang Wentao Ye Qing-Chang Zhao Nabil Brice Jinjun geng Lin Lin Wei-Yang Wang Fei Xie Shao-Lin Xiong Shu Zhang Yucong Fu Dong Lai Jian Li Pan-Ping Li Xiaobo Li Xinyu Li Honghui Liu Jiren Liu Jingqiang Peng Qingcang Shui Youli Tuo Hongguang Wang Wei Wang Shanshan Weng Yuan You Xiaoping Zheng Xia Zhou 《Science China(Physics,Mechanics & Astronomy)》 2025年第11期93-121,共29页
In this paper we present the science potential of the enhanced X-ray Timing and Polarimetry(eXTP)mission,in its new configuration,for studies of strongly magnetized compact objects.We discuss the scientific potential ... In this paper we present the science potential of the enhanced X-ray Timing and Polarimetry(eXTP)mission,in its new configuration,for studies of strongly magnetized compact objects.We discuss the scientific potential of eXTP for quantum electrodynamic(QED)studies,especially leveraging the recent observations made with the NASA IXPE mission.Given eXTP’s unique combination of timing,spectroscopy,and polarimetry,we focus on the perspectives for physics and astrophysics studies of strongly magnetized compact objects,such as magnetars and accreting X-ray pulsars.Developed by an international Consortium led by the Institute of High Energy Physics of the Chinese Academy of Sciences,the eXTP mission is expected to launch in early 2030. 展开更多
关键词 neutron stars QED MAGNETARS accreting pulsars eXTP
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Dense matter in neutron stars with eXTP
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作者 Ang Li Anna L.Watts +82 位作者 Guobao Zhang Sebastien Guillot Yanjun Xu Andrea Santangelo Silvia Zane Hua Feng Shuang-Nan Zhang mingyu ge Liqiang Qi Tuomo Salmi Bas Dorsman Zhiqiang Miao Zhonghao Tu Yuri Cavecchi Xia Zhou Xiaoping Zheng Weihua Wang Quan Cheng Xuezhi Liu Yining Wei Wei Wang Yujing Xu Shanshan Weng Weiwei Zhu Zhaosheng Li Lijing Shao Youli Tuo Akira Dohi Ming Lyu Peng Liu Jianping Yuan Mingyang Wang Wenda Zhang Zexi Li Lian Tao Liang Zhang Hong Shen Constanc¸a Providencia Laura Tolos Alessandro Patruno Li Li Guozhu Liu Kai Zhou Lie-Wen Chen Yizhong Fan Toshitaka Kajino Dong Lai Xiangdong Li Jie Meng Xiaodong Tang Zhigang Xiao Shaolin Xiong Renxin Xu Shan-Gui Zhou David R.Ballantyne G.Fiorella Burgio Jer´ome Chenevez Devarshi Choudhury Anthea F.Fantina Duncan K.Galloway Francesca Gulminelli Kai Hebeler Mariska Hoogkamer Jorge E.Horvath Yves Kini Aleksi Kurkela Manuel Linares Jer´ome Margueron Melissa Mendes Micaela Oertel Alessandro Papitto Juri Poutanen Nanda Rea Achim Schwenk Xin-Ying Song Isak Svensson David Tsang Aleksi Vuorinen Nils Andersson M.Coleman Miller Luciano Rezzolla Jirina R.Stone Anthony W.Thomas 《Science China(Physics,Mechanics & Astronomy)》 2025年第11期21-62,共42页
In this white paper,we present the potential of the enhanced X-ray timing and polarimetry(eXTP)mission to constrain the equation of state of dense matter in neutron stars,exploring regimes not directly accessible to t... In this white paper,we present the potential of the enhanced X-ray timing and polarimetry(eXTP)mission to constrain the equation of state of dense matter in neutron stars,exploring regimes not directly accessible to terrestrial experiments.By observing a diverse population of neutron stars—including isolated objects,X-ray bursters,and accreting systems—eXTP’s unique combination of timing,spectroscopy,and polarimetry enables high-precision measurements of compactness,spin,surface temperature,polarimetric signals,and timing irregularity.These multifaceted observations,combined with advances in theoretical modeling,pave the way toward a comprehensive description of the properties and phases of dense matter from the crust to the core of neutron stars.Under development by an international Consortium led by the Institute of High Energy Physics of the Chinese Academy of Sciences,the eXTP mission is planned to be launched in early 2030. 展开更多
关键词 dense matter equation of state X-rays neutron stars
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The enhanced X-ray Timing and Polarimetry mission—eXTP for launch in 2030
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作者 Shuang-Nan Zhang Andrea Santangelo +158 位作者 Yupeng Xu Hua Feng Fangjun Lu Yong Chen mingyu ge Kirpal Nandra Xin Wu Marco Feroci Margarita Hernanz Congzhan Liu Huilin He Yusa Wang Weichun Jiang Weiwei Cui Yanji Yang Juan Wang Wei Li Hong Li Yuanyuan Du Xiaohua Liu Bin Meng Xiangyang Wen Aimei Zhang Jia Ma Maoshun Li Gang Li Liqiang Qi Jianchao Sun Tao Luo Hongwei Liu Xiaojing Liu Fan Zhang Laidan Luo Yuxuan Zhu Zijian Zhao Liang Sun Xiongtao Yang Qiong Wu Jiechen Jiang Haoli Shi Jiangtao Liu Yanbing Xu Sheng Yang Laiyu Zhang Dawei Han Na Gao Jia Huo Ziliang Zhang Hao Wang Xiaofan Zhao Shuo Wang Zhenjie Li Ziyu Bao Yaoguang Liu Ke Wang Na Wang Bo Wang Langping Wang Dianlong Wang Fei Ding Lizhi Sheng Pengfei Qiang Yongqing Yan Yongan Liu Zhenyu Wu Yichen Liu Hao Chen Yacong Zhang Hongbang Liu Alexander Altmann Thomas Bechteler Vadim Burwitz Carlo Fiorini Peter Friedrich Norbert Meidinger Rafael Strecker Luca Baldini Ronaldo Bellazzini Raffaella Bonino Andrea Frassa` Luca Latronico Simone Maldera Alberto Manfreda Massimo Minuti Melissa Pesce-Rollins Carmelo Sgro` Stefano Tugliani Giovanni Pareschi Stefano Basso Giorgia Sironi Daniele Spiga Gianpiero Tagliaferri Andrii Tykhonov Stephane Paltani` Enrico Bozzo Christoph Tenzer Jorg Bayer¨ Youli Tuo Honghui Liu Yonghe Zhang Zhiming Cai Huaqiu Liu Wen Chen Chunhong Wang Tao He Yehai Chen Chengbo Qiu Ye Zhang Jianchao Feng Xiaofei Zhu Heng Zhou Shijie Zheng Liming Song Haoli Shi Jinzhou Wang Shumei Jia Zewen Jiang Xiaobo Li Haisheng Zhao Ju Guan Juan Zhang Chengkui Li Yue Huang Jinyuan Liao Yuan You Hongmei Zhang Wenshuai Wang Shuang Wang ge Ou Hao Hu Jingyan Shi Tao Cui Xiaowei Jiang Yaodong Cheng Haibo Li Yanjun Xu Silvia Zane Cosimo Bambi Qingcui Bu Simone Dall’Osso Alessandra De Rosa Lijun Gou Sebastien Guillot Long Ji Ang Li Jirong Mao Alessandro Patruno Giulia Stratta Roberto Taverna Sergey Tsygankov Phil Uttley Anna L.Watts Xuefeng Wu Renxin Xu Shuxu Yi Guobao Zhang Liang Zhang Wen Zhao Ping Zhou 《Science China(Physics,Mechanics & Astronomy)》 2025年第11期3-20,共18页
In this paper,we present the current status of the enhanced X-ray Timing and Polarimetry mission,which has been fully approved for launch in 2030.eXTP is a space science mission designed to study fundamental physics u... In this paper,we present the current status of the enhanced X-ray Timing and Polarimetry mission,which has been fully approved for launch in 2030.eXTP is a space science mission designed to study fundamental physics under extreme conditions of matter density,gravity,and magnetism.The mission aims at determining the equation of state of matter at supra-nuclear density,measuring the effects of quantum electro-dynamics,and understanding the dynamics of matter in strong-field gravity.In addition to investigating fundamental physics,the eXTP mission is poised to become a leading observatory for time-domain and multi-messenger astronomy in the 2030s,as well as providing observations of unprecedented quality on a variety of galactic and extragalactic objects.After briefly introducing the history and a summary of the scientific objectives of the eXTP mission,this paper presents a comprehensive overview of:(1)the cutting-edge technology,technical specifications,and anticipated performance of the mission’s scientific instruments;(2)the full mission profile,encompassing spacecraft design,operational capabilities,and ground segment infrastructure. 展开更多
关键词 X-ray instrumentation X-ray polarimetry X-ray timing space mission:eXTP
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First results of terrestrial gamma-ray flash observed by Insight-HXMT
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作者 Qibin Yi Yi Zhao +28 位作者 Shaolin Xiong Xuejuan Yang Ce Cai Shuo Xiao Gang Li Gaopeng Lu Hongbo Zhang Fanchao Lyu Wei Xu Xiaobo Li Chengkui Li mingyu ge Haisheng Zhao Wangchen Xue Jiacong Liu Chao Zheng Yanqiu Zhang Chenwei Wang Wenjun Tan Shenglun Xie Yue Huang Zhi Chang Congzhan Liu Fangjun Lu Liming Song Yupeng Xu Zhen Zhang Shuangnan Zhang Tipei Li 《Science China(Physics,Mechanics & Astronomy)》 2025年第5期113-124,共12页
As China's first X-ray astronomy satellite,the hard X-ray modulation telescope(Insight-HXMT)carries three sets of X-ray telescopes.The high energy X-ray telescope(Insight-HXMT/HE)could serve as an all-sky gamma-ra... As China's first X-ray astronomy satellite,the hard X-ray modulation telescope(Insight-HXMT)carries three sets of X-ray telescopes.The high energy X-ray telescope(Insight-HXMT/HE)could serve as an all-sky gamma-ray monitor with a detection area of up to 5000 cm2and energy range from about 200 ke V to 3 Me V.These characteristics,together with the high orbital inclination angle(43°)of the satellite,make the HE very suitable for detecting terrestrial gamma-ray flashes(TGFs).In this work,we implemented a dedicated TGF search algorithm for Insight-HXMT/HE,and identified 282 bright TGFs in its first four years of operation.We made a systematic study on the properties of these TGFs,including trigger time,duration,intensity,as well as the lightning association.We found that TGFs detected in mid-latitude regions(30°to 43°)are rare and they do not exhibit significantly different properties compared with TGFs in low-latitude(within 30°).Interestingly,the hardness ratio of TGF measured by Insight-HXMT/HE seems to be independent of the TGF duration,which differs from previous studies.These results show that,despite the dedicated design for astronomical observation,Insight-HXMT/HE is a versatile instrument to study energetic radiation phenomena from the Earth. 展开更多
关键词 gamma-ray sources gamma-ray telescopes terrestrial atmosphere
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Insight-HXMT observations of the first binary neutron star merger GW170817 被引量:21
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作者 TiPei Li ShaoLin Xiong +107 位作者 ShuangNan Zhang FangJun Lu LiMing Song XueLei Cao Zhi Chang Gang Chen Li Chen TianXiang Chen Yong Chen YiBao Chen YuPeng Chen Wei Cui WeiWei Cui JingKang Deng YongWei Dong YuanYuan Du MinXue Fu GuanHua Gao He Gao Min Gao mingyu ge YuDong Gu Ju Guan ChengCheng Guo DaWei Han Wei Hu Yue Huang Jia Huo ShuMei Jia LuHua Jiang WeiChun Jiang Jing Jin YongJie Jin Bing Li ChengKui Li Gang Li MaoShun Li Wei Li Xian Li XiaoBo Li XuFang Li YanGuo Li ZiJian Li ZhengWei Li XiaoHua Liang JinYuan Liao CongZhan Liu GuoQing Liu HongWei Liu ShaoZhen Liu XiaoJing Liu Yuan Liu YiNong Liu Bo Lu XueFeng Lu Tao Luo Xiang Ma Bin Meng Yi Nang JianYin Nie ge OU JinLu Qu Na Sai Liang Sun Yin Tan Lian Tao WenHui Tao YouLi Tuo GuoFeng Wang HuanYu Wang Juan Wang WenShuai Wang YuSa Wang XiangYang Wen BoBing WU Mei Wu GuangCheng Xiao He Xu YuPeng Xu LinLi Yan JiaWei Yang Sheng Yang YanJi Yang AiMei Zhang ChunLei Zhang ChengMo Zhang Fan Zhang HongMei Zhang Juan Zhang Qiang Zhang Shu Zhang Tong Zhang Wei Zhang WanChang Zhang WenZhao Zhang Yi Zhang Yue Zhang YiFei Zhang YongJie Zhang Zhao Zhang ZiLiang Zhang HaiSheng Zhao JianLing Zhao XiaoFan Zhao ShiJie Zheng Yue Zhu YuXuan Zhu ChangLin Zou 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2018年第3期26-33,共8页
Finding the electromagnetic (EM) counterpart of binary compact star merger, especially the binary neutron star (BNS) merger, is critically important for gravitational wave (GW) astronomy, cosmology and fundament... Finding the electromagnetic (EM) counterpart of binary compact star merger, especially the binary neutron star (BNS) merger, is critically important for gravitational wave (GW) astronomy, cosmology and fundamental physics. On Aug. 17, 2017, Advanced LIGO and Fermi/GBM independently triggered the first BNS merger, GW170817, and its high energy EM counterpart, GRB 170817A, respectively, resulting in a global observation campaign covering gamma-ray, X-ray, UV, optical, IR, radio as well as neutrinos. The High Energy X-ray telescope (HE) onboard Insight-HXMT (Hard X-ray Modulation Telescope) is the unique high-energy gamma-ray telescope that monitored the entire GW localization area and especially the optical counterpart (SSS17a/AT2017gfo) with very large collection area (M000 cm2) and microsecond time resolution in 0.2-5 MeV. In addition, Insight-HXMT quickly implemented a Target of Opportunity (TOO) observation to scan the GW localization area for potential X-ray emission from the GW source. Although Insight-HXMT did not detect any significant high energy (0.2-5 MeV) radiation from GW170817, its observation helped to confirm the unexpected weak and soft nature of GRB 170817A. Meanwhile, Insight-HXMT/HE provides one of the most stringent constraints (-10-7 to 104 erg/cm2/s) for both GRB170817A and any other possible precursor or extended emissions in 0.2-5 MeV, which help us to better understand the properties of EM radiation from this BNS merger. Therefore the observation of Insight-HXMT constitutes an important chapter in the full context of multi-wavelength and multi-messenger observation of this historical GW event. 展开更多
关键词 GW170817 BNS merger gravitational wave electromagnetic counterpart
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Overview to the Hard X-ray Modulation Telescope (Insight-HXMT) Satellite 被引量:20
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作者 Shuang-Nan Zhang TiPei Li +116 位作者 FangJun Lu LiMing Song YuPeng X u CongZhan Liu Yong Chen XueLei Cao QingCui Bu Zhi Chang Gang Chen Li Chen TianXiang Chen YiBao Chen YuPeng Chen Wei Cui WeiWei Cui JingKang Deng YongWei Dong Yuan Yuan Du MinXue Fu GuanHua Gao He Gao Min Gao mingyu ge YuDong Gu Ju Guan Can Gungor ChengCheng Guo DaWei Han Wei Hu Yue Huang Jia Huo ShuMei Jia LuHua Jiang WeiChun Jiang Jing Jin YongJie Jin Bing Li ChengKui Li Gang Li MaoShun Li Wei Li Xian Li XiaoBo Li XuFang Li YanGuo Li ZiJian Li ZhengWei Li XiaoHua Liang JinYuan Liao GuoQing Liu HongWei Liu ShaoZhen Liu XiaoJing Liu Yuan Liu YiNong Liu Bo Lu XueFeng Lu Tao Luo Xiang Ma Bin Meng Yi Nang JianYin Nie ge Ou JinLu Qu Na Sai RenCheng Shang GuoHong Shen Liang Sun Ying Tan Lian Tao YouLi Tuo Chen Wang ChunQin Wang GuoFeng Wang HuanYu Wang Juan Wang WenShuai Wang YuSa Wang XiangYang Wen BaiYang Wu BoBing Wu Mei Wu GuangCheng Xiao ShaoLin Xiong LinLi Yan JiaWei Yang Sheng Yang YanJi Yang QiBin Yi Bin Yuan AiMei Zhang ChunLei Zhang ChengMo Zhang Fan Zhang HongMei Zhang Juan Zhang Qiang Zhang ShenYi Zhangs Shu Zhang Tong Zhang WanChang Zhang Wei Zhang WenZhao Zhang Yi Zhang YiFei Zhang YongJie Zhang Yue Zhang Zhao Zhang Zhi Zhang ZiLiang Zhang HaiSheng Zhao XiaoFan Zhao ShiJie Zheng JianFeng Zhou YuXuan Zhu Yue Zhu RenLin Zhuang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2020年第4期2-19,共18页
As China’s first X-ray astronomical satellite, the Hard X-ray Modulation Telescope (HXMT), which was dubbed as Insight-HXMT after the launch on June 15, 2017, is a wide-band(1-250 ke V) slat-collimator-based X-ray as... As China’s first X-ray astronomical satellite, the Hard X-ray Modulation Telescope (HXMT), which was dubbed as Insight-HXMT after the launch on June 15, 2017, is a wide-band(1-250 ke V) slat-collimator-based X-ray astronomy satellite with the capability of all-sky monitoring in 0.2-3 Me V. It was designed to perform pointing, scanning and gamma-ray burst(GRB)observations and, based on the Direct Demodulation Method (DDM), the image of the scanned sky region can be reconstructed.Here we give an overview of the mission and its progresses, including payload, core sciences, ground calibration/facility, ground segment, data archive, software, in-orbit performance, calibration, background model, observations and some preliminary results. 展开更多
关键词 X-and γ-ray telescopes and instrumentation neutron stars black holes X-ray binaries γ-ray bursts
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The enhanced X-ray Timing and Polarimetry mission—eXTP 被引量:20
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作者 ShuangNan Zhang Andrea Santangelo +149 位作者 Marco Feroci YuPeng Xu FangJun Lu Yong Chen Hua Feng Shu Zhang Sφren Brandt Margarita Hernanz Luca Baldini Enrico Bozzo Riccardo Campana Alessandra De Rosa YongWei Dong Yuri Evangelista Vladimir Karas Norbert Meidinger Aline Meuris Kirpal Nandra Teng Pan Giovanni Pareschi Piotr Orleanski QiuShi Huang Stephane Schanne Giorgia Sironi Daniele Spiga Jiri Svoboda Gianpiero Tagliaferri Christoph Tenzer Andrea Vacchi Silvia Zane Dave Walton ZhanShan Wang Berend Winter Xin Wu Jean J.M.in't Zand Mahdi Ahangarianabhari Giovanni Ambrosi Filippo Ambrosino Marco Barbera Stefano Basso Jörg Bayer Ronaldo Bellazzini Pierluigi Bellutti Bruna Bertucci Giuseppe Bertuccio Giacomo Borghi XueLei Cao Franck Cadoux Francesco Ceraudo TianXiang Chen Yu Peng Chen Jerome Chevenez Marta Civitani Wei Cui WeiWei Cui Thomas Dauser Ettore Del Monte Sergio Di Cosimo Sebastian Diebold Victor Doroshenko Michal Dovciak YuanYuan Du Lorenzo Ducci QingMei Fan Yannick Favre Fabio Fuschino JoséLuis Ga'lvez Min Gao mingyu ge Olivier gevin Marco Grassi QuanYing Gu YuDong Gu DaWei Han Bin Hong Wei Hu Long Ji ShuMei Jia WeiChun Jiang Thomas Kennedy Ingo Kreykenbohm Irfan Kuvvetli Claudio Labanti Luca Latronico Gang Li MaoShun Li Xian Li Wei Li ZhengWei Li Olivier Limousin HongWei Liu XiaoJing Liu Bo Lu Tao Luo Daniele Macera Piero Malcovati Adrian Martindale Malgorzata Michalska Bin Meng Massimo Minuti Alfredo Morbidini Fabio Muleri Stephane Paltani Emanuele Perinati Antonino Picciotto Claudio Piemonte JinLu Qu Alexandre Rachevski Irina Rashevskaya Jerome Rodriguez Thomas Schanz ZhengXiang Shen LiZhi Sheng JiangBo Song LiMing Song Carmelo Sgro Liang Sun Ying Tan Phil Uttley Bo Wang DianLong Wang GuoFeng Wang Juan Wang LangPing Wang YuSa Wang Anna L.Watts XiangYang Wen Jörn Wilms ShaoLin Xiong JiaWei Yang Sheng Yang YanJi Yang Nian Yu WenDa Zhang Gianluigi Zampa Nicola Zampa Andrzej A.Zdziarski AiMei Zhang ChengMo Zhang Fan Zhang Long Zhang Tong Zhang Yi Zhang XiaoLi Zhang ZiLiang Zhang BaoSheng Zhao ShiJie Zheng Yu Peng Zhou Nicola Zorzi J.Frans Zwart 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2019年第2期3-27,共25页
In this paper we present the enhanced X-ray Timing and Polarimetry mission—eXTP. eXTP is a space science mission designed to study fundamental physics under extreme conditions of density, gravity and magnetism. The m... In this paper we present the enhanced X-ray Timing and Polarimetry mission—eXTP. eXTP is a space science mission designed to study fundamental physics under extreme conditions of density, gravity and magnetism. The mission aims at determining the equation of state of matter at supra-nuclear density, measuring effects of QED, and understanding the dynamics of matter in strong-field gravity. In addition to investigating fundamental physics, eXTP will be a very powerful observatory for astrophysics that will provide observations of unprecedented quality on a variety of galactic and extragalactic objects. In particular, its wide field monitoring capabilities will be highly instrumental to detect the electro-magnetic counterparts of gravitational wave sources.The paper provides a detailed description of:(1) the technological and technical aspects, and the expected performance of the instruments of the scientific payload;(2) the elements and functions of the mission, from the spacecraft to the ground segment. 展开更多
关键词 X-ray instrumentation X-ray polarimetry X-ray timing space mission:eXTP
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The Medium Energy X-ray telescope (ME) onboard the Insight-HXMT astronomy satellite 被引量:6
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作者 XueLei Cao WeiChun Jiang +38 位作者 Bin Meng WanChang Zhang Tao Luo Sheng Yang ChunLei Zhang YuDong Gu Liang Sun XiaoJing Liu JiaWei Yang Xian Li Ying Tan ShaoZhen Liu YuanYuan Du FangJun Lu YuPeng Xu Ju Guan ShuangNan Zhang HuanYu Wang TiPei Li ChengMo Zhang XiangYang Wen JinLu Qu LiMing Song XiaoBo Li mingyu ge YuPeng Zhou ShaoLin Xiong Shu Zhang YongJie Zhang ZeHao Cheng Fei Zhang MaoShun Li XiaoHua Liang Min Gao EnBo Yang XiaoHang Liu HongWei Liu YiJung Yang Fan Zhang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2020年第4期35-48,共14页
The Medium Energy X-ray telescope(ME) is one of the three main telescopes on board the Insight hard X-ray modulation telescope(Insight-HXMT) astronomy satellite. ME contains 1728 pixels of Si-PIN detectors sensitive i... The Medium Energy X-ray telescope(ME) is one of the three main telescopes on board the Insight hard X-ray modulation telescope(Insight-HXMT) astronomy satellite. ME contains 1728 pixels of Si-PIN detectors sensitive in 5-30 ke V with a total geometrical area of 952 cm^2. The application specific integrated circuit(ASIC) chip, VA32TA6, is used to achieve low power consumption and low readout noise. The collimators define three kinds of field of views(FOVs) for the telescope, 1°×4°, 4°×4°,and blocked ones. Combination of such FOVs can be used to estimate the in-orbit X-ray and particle background components.The energy resolution of ME is ~3 ke V at 17.8 ke V(FWHM) and the time resolution is 255 μs. In this paper, we introduce the design and performance of ME. 展开更多
关键词 Si-PIN ASIC MEDIUM ENERGY X-ray
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Observatory science with eXTP 被引量:1
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作者 Jean J.M.in 't Zand Enrico Bozzo +181 位作者 JinLu Qu Xiang-Dong Li Lorenzo Amati Yang Chen Immacolata Donnarumma Victor Doroshenko Stephen A.Drake Margarita Hernanz Peter A.Jenke Thomas J.Maccarone Simin Mahmoodifar Domitilla de Martino Alessandra De Rosa Elena M.Rossi Antonia Rowlinson Gloria Sala Giulia Stratta Thomas M.Tauris Joern Wilms XueFeng Wu Ping Zhou Iván Agudo Diego Altamirano Jean-Luc Atteia Nils A.andersson M.Cristina Baglio David R.Ballantyne Altan Baykal Ehud Behar Tomaso Belloni Sudip Bhattacharyya Stefano Bianchi Anna Bilous Pere Blay Joao Braga Sφren Brandt Edward F.Brown Niccolo Bucciantini Luciano Burderi Edward M.Cackett Riccardo Campana Sergio Campana Piergiorgio Casella Yuri Cavecchi Frank Chambers Liang Chen Yu-Peng Chen Jér?me Chenevez Maria Chernyakova ChiChuan Jin Riccardo Ciolfi Elisa Costantini Andrew Cumming Antonino D'Aì Zi-Gao Dai Filippo D'Ammando Massimiliano De Pasquale Nathalie Degenaar Melania Del Santo Valerio D'Elia Tiziana Di Salvo gerry Doyle Maurizio Falanga XiLong Fan Robert D.Ferdman Marco Feroci Federico Fraschetti Duncan K.Galloway Angelo F.Gambino Poshak Gandhi mingyu ge Bruce gendre Ramandeep Gill Diego G?tz Christian Gouiffès Paola Grandi Jonathan Granot Manuel Güdel Alexander Heger Craig O.Heinke Jeroen Homan Rosario Iaria Kazushi Iwasawa Luca Izzo Long Ji Peter G.Jonker Jordi José Jelle S.Kaastra Emrah Kalemci Oleg Kargaltsev Nobuyuki Kawai Laurens Keek Stefanie Komossa Ingo Kreykenbohm Lucien Kuiper Devaky Kunneriath Gang Li En-Wei Liang Manuel Linares Francesco Longo FangJun Lu Alexander A.Lutovinov Denys Malyshev Julien Malzac Antonios Manousakis Ian McHardy Missagh Mehdipour YunPeng Men Mariano Méndez Roberto P.Mignani Romana Mikusincova M.Coleman Miller Giovanni Miniutti Christian Motch Joonas Nättilä Emanuele Nardini Torsten Neubert Paul T.O'Brien Mauro Orlandini Julian P.Osborne Luigi Pacciani Stéphane Paltani Maurizio Paolillo Iossif E.Papadakis Biswajit Paul Alberto Pellizzoni Uria Peretz Miguel A.Pérez Torres Emanuele Perinati Chanda Prescod-Weinstein Pablo Reig Alessandro Riggio Jerome Rodriguez Pablo Rodríguez-Gil Patrizia Romano Agata Rózańska Takanori Sakamoto Tuomo Salmi Ruben Salvaterra andrea Sanna andrea Santangelo Tuomas Savolainen Stéphane Schanne Hendrik Schatz LiJing Shao andy Shearer Steven N.Shore Ben W.Stappers Tod E.Strohmayer Valery F.Suleimanov Jirí Svoboda F.-K.Thielemann Francesco Tombesi Diego F.Torres Eleonora Torresi Sara Turriziani andrea Vacchi Stefano Vercellone Jacco Vink Jian-Min Wang JunFeng Wang Anna L.Watts ShanShan Weng Nevin N.Weinberg Peter J.Wheatley Rudy Wijnands Tyrone E.Woods Stan E.Woosley ShaoLin Xiong YuPeng Xu Zhen Yan george Younes WenFei Yu Feng Yuan Luca Zampieri Silvia Zane andrzej A.Zdziarski Shuang-Nan Zhang Shu Zhang Shuo Zhang Xiao Zhang Michael Zingale 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2019年第2期97-138,共42页
In this White Paper we present the potential of the enhanced X-ray Timing and Polarimetry(eXTP) mission for studies related to Observatory Science targets. These include flaring stars, supernova remnants, accreting wh... In this White Paper we present the potential of the enhanced X-ray Timing and Polarimetry(eXTP) mission for studies related to Observatory Science targets. These include flaring stars, supernova remnants, accreting white dwarfs, low and high mass X-ray binaries, radio quiet and radio loud active galactic nuclei, tidal disruption events, and gamma-ray bursts. eXTP will be excellently suited to study one common aspect of these objects: their often transient nature. Developed by an international Consortium led by the Institute of High Energy Physics of the Chinese Academy of Science, the eXTP mission is expected to be launched in the mid 2020s. 展开更多
关键词 space research in struments nuclear astrophysics flare stars accretion and accretion disks mass loss and stellar winds cataclysmic binaries X-ray binaries supernova remnants active galactic nuclei X-ray bursts gamma-ray bursts gravitational waves
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Dense matter with eXTP 被引量:1
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作者 Anna L.Watts WenFei Yu +74 位作者 Juri Poutanen Shu Zhang Sudip Bhattacharyya Slavko Bogdanov Long Ji Alessandro Patruno Thomas E.Riley Pavel Bakala Altan Baykal Federico Bernardini Ignazio Bombaci Edward Brown Yuri Cavecchi Deepto Chakrabarty Jér?me Chenevez Nathalie Degenaar Melania Del Santo Tiziana Di Salvo Victor Doroshenko Maurizio Falanga Robert D.Ferdman Marco Feroci Angelo F.Gambino mingyu ge Svenja K.Greif Sebastien Guillot Can Gungor Dieter H.Hartmann Kai Hebeler Alexander Heger Jeroen Homan Rosario Iaria Jean in 't Zand Oleg Kargaltsev Aleksi KurkelaTheoretical Physics Department CERN XiaoYu Lai Ang Li XiangDong Li ZhaoSheng Li Manuel Linares FangJun Lu Simin Mahmoodifar Mariano Méndez M.Coleman Miller Sharon Morsink Joonas N?ttil? Andrea Possenti Chanda Prescod-Weinstein JinLu Qu Alessandro Riggio Tuomo Salmi Andrea Sanna Andrea Santangelo Hendrik Schatz Achim Schwenk LiMing Song Eva?rámková Benjamin Stappers Holger Stiele Tod Strohmayer Ingo Tews Laura Tolos Gabriel T?r?k David Tsang Martin Urbanec Andrea Vacchi RenXin Xu YuPeng Xu Silvia Zane GuoBao Zhang ShuangNan Zhang WenDa Zhang ShiJie Zheng Xia Zhou 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2019年第2期28-44,共17页
In this White Paper we present the potential of the Enhanced X-ray Timing and Polarimetry(eXTP) mission for determining the nature of dense matter; neutron star cores host an extreme density regime which cannot be rep... In this White Paper we present the potential of the Enhanced X-ray Timing and Polarimetry(eXTP) mission for determining the nature of dense matter; neutron star cores host an extreme density regime which cannot be replicated in a terrestrial laboratory. The tightest statistical constraints on the dense matter equation of state will come from pulse profile modelling of accretion-powered pulsars, burst oscillation sources, and rotation-powered pulsars. Additional constraints will derive from spin measurements, burst spectra, and properties of the accretion flows in the vicinity of the neutron star. Under development by an international Consortium led by the Institute of High Energy Physics of the Chinese Academy of Sciences, the eXTP mission is expected to be launched in the mid 2020 s. 展开更多
关键词 NEUTRON X-rays DENSE MATTER EQUATION of STATE
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In-orbit performance of LE onboard Insight-HXMT in the first 5 years 被引量:1
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作者 Xiaobo Li Yong Chen +18 位作者 Liming Song Weiwei Cui Wei Li Juan Wang Shuang-Nan Zhang Fangjun Lu Yupeng Xu Haisheng Zhao mingyu ge Youli Tuo Yusa Wang Tianxiang Chen Dawei Han Jia Huo Yanji Yang Maoshun Li Ziliang Zhang Yuxuan Zhu Xiaofan Zhao 《Radiation Detection Technology and Methods》 CSCD 2023年第1期25-33,共9页
Purpose The low-energy X-ray telescope(LE)is a main instrument of the Insight-HXMT mission and consists of 96 swept charge devices covering the 1–10 keV energy band.The energy gain and resolution are continuously cal... Purpose The low-energy X-ray telescope(LE)is a main instrument of the Insight-HXMT mission and consists of 96 swept charge devices covering the 1–10 keV energy band.The energy gain and resolution are continuously calibrated by analyzing Cassiopeia A(Cas A)and blank sky data,while the effective areas are also calibrated with the observations of the Crab Nebula.In this paper,we present the evolution of the in-orbit performances of LE in the first 5 years since launch.Methods The Insight-HXMT data analysis software package(HXMTDAS)is utilized to extract the spectra of Cas A,blank sky,and Crab Nebula using different good time interval selections.We fit a model with a power-law continuum and several Gaussian lines to different ranges of Cas A and blank sky spectra to get peak energies of their lines through xspec.After updating the energy gain calibration in CALibration DataBase(CALDB),we rerun the Cas A data to obtain the energy resolution.An empirical function is used to modify the simulated effective areas so that the background-subtracted spectrum of the Crab Nebula can best match the standard model of the Crab Nebula.Results The energy gain,resolution,and effective areas are calibrated every month.The corresponding calibration results are duly updated in CALDB,which can be downloaded and used for the analysis of Insight-HXMT data.Simultaneous observations with NuSTAR and NICER can also be used to verify our derived results.Conclusion LE is a well-calibrated X-ray telescope working in 1–10 keV band.The uncertainty of LE gain is less than 20eV in 2–9 keV band,and the uncertainty of LE resolution is less than 15eV.The systematic errors of LE,compared to the model of the Crab Nebula,are lower than 1.5%in 1–10 keV. 展开更多
关键词 X-ray Calibration SCD In-orbit performance
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