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Development of x-ray multilayer telescope optics for XTP mission

机译:开发XTP任务的X射线多层望远镜光学

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The X-ray Timing and Polarization (XTP) satellite is dedicated to study black hole, neutron star and magnetar and then get more information in the physics under extreme gravity, density and magnetism. With an effective area of about 1 square meter and angular resolution of 1 arcminute, XTP is expected to make the most sensitive temporal and polarization observations with good energy resolution in 1-30 keV. Large collecting areas are obtained by tightly nesting layers of grazing incidence mirrors in a conical approximation Wolter-I design. The segmented mirrors that form these layers are formed by thermally slumping glass substrates coated with depth-graded W/Si multilayers for enhanced reflectivity in higher energy region. In order to force the overall shape of the nominally cylindrical substrates to the appropriate conic form, an over-constraint method was used to assemble the mirrors to a telescope. We will present performance on the XTP optics and report the current status of the telescope.
机译:X射线定时和极化(XTP)卫星专用于研究黑洞,中子星和磁场,然后在极端重力,密度和磁性下获得物理学的更多信息。具有约1平方米的有效面积和1个Arcminute的角度分辨率,预计XTP将在1-30 keV中具有良好的能量分辨率来实现最敏感的时间和极化观察。通过在圆锥形近似Wolter-I设计中紧密嵌套的放牧入射镜层来获得大的收集区域。形成这些层的分段反射镜通过涂有深度级W / Si多层的热衰减玻璃基板形成,用于增强更高能量区域的反射率。为了迫使名义上圆柱形基板的整体形状以适当的锥形形式,使用过约束方法将镜子组装到望远镜。我们将在XTP光学系统上呈现性能,并报告望远镜的当前状态。

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