_version_ 1866918137115443200
author Ge, Mingyu
Ji, Long
Taverna, Roberto
Tsygankov, Sergey
Xu, Yanjun
Santangelo, Andrea
Zane, Silvia
Zhang, Shuang-Nan
Feng, Hua
Chen, Wei
Cheng, Quan
Hou, Xian
Imbrogno, Matteo
Israel, Gian Luca
Kelly, Ruth
Kong, Ling-Da
Liu, Kuan
Mushtukov, Alexander
Poutanen, Juri
Suleimanov, Valery
Tao, Lian
Tong, Hao
Turolla, Roberto
Wang, Weihua
Ye, Wentao
Zhao, Qing-Chang
Brice, Nabil
Geng, Jinjun
Lin, Lin
Wang, Wei-Yang
Xie, Fei
Xiong, Shao-Lin
Zhang, Shu
Fu, Yucong
Lai, Dong
Li, Jian
Li, Pan-Ping
Li, Xiaobo
Li, Xinyu
Liu, Honghui
Liu, Jiren
Peng, Jingqiang
Shui, Qingcang
Tuo, Youli
Wang, Hongguang
Wang, Wei
Weng, Shanshan
You, Yuan
Zheng, Xiaoping
Zhou, Xia
author_facet Ge, Mingyu
Ji, Long
Taverna, Roberto
Tsygankov, Sergey
Xu, Yanjun
Santangelo, Andrea
Zane, Silvia
Zhang, Shuang-Nan
Feng, Hua
Chen, Wei
Cheng, Quan
Hou, Xian
Imbrogno, Matteo
Israel, Gian Luca
Kelly, Ruth
Kong, Ling-Da
Liu, Kuan
Mushtukov, Alexander
Poutanen, Juri
Suleimanov, Valery
Tao, Lian
Tong, Hao
Turolla, Roberto
Wang, Weihua
Ye, Wentao
Zhao, Qing-Chang
Brice, Nabil
Geng, Jinjun
Lin, Lin
Wang, Wei-Yang
Xie, Fei
Xiong, Shao-Lin
Zhang, Shu
Fu, Yucong
Lai, Dong
Li, Jian
Li, Pan-Ping
Li, Xiaobo
Li, Xinyu
Liu, Honghui
Liu, Jiren
Peng, Jingqiang
Shui, Qingcang
Tuo, Youli
Wang, Hongguang
Wang, Wei
Weng, Shanshan
You, Yuan
Zheng, Xiaoping
Zhou, Xia
contents 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 on 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.
format Preprint
id arxiv_https___arxiv_org_abs_2506_08369
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Physics of Strong Magnetism with eXTP
Ge, Mingyu
Ji, Long
Taverna, Roberto
Tsygankov, Sergey
Xu, Yanjun
Santangelo, Andrea
Zane, Silvia
Zhang, Shuang-Nan
Feng, Hua
Chen, Wei
Cheng, Quan
Hou, Xian
Imbrogno, Matteo
Israel, Gian Luca
Kelly, Ruth
Kong, Ling-Da
Liu, Kuan
Mushtukov, Alexander
Poutanen, Juri
Suleimanov, Valery
Tao, Lian
Tong, Hao
Turolla, Roberto
Wang, Weihua
Ye, Wentao
Zhao, Qing-Chang
Brice, Nabil
Geng, Jinjun
Lin, Lin
Wang, Wei-Yang
Xie, Fei
Xiong, Shao-Lin
Zhang, Shu
Fu, Yucong
Lai, Dong
Li, Jian
Li, Pan-Ping
Li, Xiaobo
Li, Xinyu
Liu, Honghui
Liu, Jiren
Peng, Jingqiang
Shui, Qingcang
Tuo, Youli
Wang, Hongguang
Wang, Wei
Weng, Shanshan
You, Yuan
Zheng, Xiaoping
Zhou, Xia
High Energy Astrophysical Phenomena
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 on 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.
title Physics of Strong Magnetism with eXTP
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2506.08369