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The International X-ray Observatory and other X-ray missions, expectations for pulsar physics

机译:国际X射线天文台和其他X射线任务,对脉冲星物理学的期望

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Pulsar systems are very good experimental laboratories for the fundamental physics in extreme environments which cannot be achieved on ground. For example, the systems are under conditions of high magnetic field strength, large gravitational potential, and fast rotation, representing highly-ionized hot plasmas with particle acceleration etc. We can test phenomena related to these extreme condition in the X-ray to sub-MeV bands. In future, we will get fantastic capabilities of higher sensitivities, larger effective area, higher energy resolutions, and X-ray imaging capabilities with wider energy band than current missions, in addition to opening new eyes of polarization measurements, and deep all sky monitoring capabilities, with future X-ray missions including ASTRO-H, eRossita, NuSTAR, GEMS, International X-ray Observatory {IXO) and so on. In this paper, we summarize current hot topics on pulsars and discuss expected developments by these future missions, especially by ASTRO-H and IXO, based on the current design parameters.
机译:脉冲星系统是极端环境下基础物理无法满足的非常好的实验实验室。例如,系统处于高磁场强度,大重力势能和快速旋转的条件下,代表具有粒子加速作用的高度电离的热等离子体。我们可以在X射线中测试与这些极端条件相关的现象,从而MeV乐队。将来,我们将获得比现有任务更高的灵敏度,更大的有效面积,更高的能量分辨率以及更宽的能带范围的X射线成像功能,以及打开极化测量的新视野以及深空全天候监视功能的出色能力,其未来的X射线任务包括ASTRO-H,eRossita,NuSTAR,GEMS,国际X射线天文台(IXO)等。在本文中,我们总结了有关脉冲星的当前热门话题,并根据当前的设计参数,讨论了这些未来任务,特别是ASTRO-H和IXO的预期发展。

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