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The Neutron star Interior Composition ExploreR (NICER): an Explorer mission of opportunity for soft x-ray timing spectroscopy

机译:中子星内饰物ExploreR(NICER):探索者的软X射线定时光谱学机会

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The Neutron star Interior Composition ExploreR (NICER) is a proposed NASA Explorer Mission of Opportunity dedicated to the study of the extraordinary gravitational, electromagnetic, and nuclear-physics environments embodied by neutron stars. NICER will explore the exotic states of matter within neutron stars, where density and pressure are higher than in atomic nuclei, confronting theory with unique observational constraints. NICER will enable rotation-resolved spectroscopy of the thermal and non-thermal emissions of neutron stars in the soft (0.2–12 keV) X-ray band with unprecedented sensitivity, probing interior structure, the origins of dynamic phenomena, and the mechanisms that underlie the most powerful cosmic particle accelerators known. NICER will achieve these goals by deploying, following launch in December 2016, an X-ray timing and spectroscopy instrument as an attached payload aboard the International Space Station (ISS). A robust design compatible with the ISS visibility, vibration, and contamination environments allows NICER to exploit established infrastructure with low risk. Grazing-incidence optics coupled with silicon drift detectors, actively pointed for a full hemisphere of sky coverage, will provide photon-counting spectroscopy and timing registered to GPS time and position, with high throughput and relatively low background. In addition to advancing a vital multi-wavelength approach to neutron star studies through coordination with radio and γ-ray observations, NICER will provide a rapid-response capability for targeting of transients, continuity in X-ray timing astrophysics investigations post-RXTE through a proposed Guest Observer program, and new discovery space in soft X-ray timing science.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:中子星内部成分探索器(NICER)是一项拟议的NASA探索者机会任务,致力于研究中子星所体现的非常规引力,电磁和核物理环境。 NICER将探索中子星内物质的奇异状态,这些中子星的密度和压力高于原子核,从而使理论面临独特的观测约束。 NICER将以前所未有的灵敏性,旋转的内部结构,动态现象的起源以及潜在的机制,使旋转(分辨力为12–12 keV)X射线中子星的热和非热辐射光谱得以解析最强大的宇宙粒子加速器。 NICER将通过在2016年12月发射后在国际空间站(ISS)上部署X射线定时和光谱仪作为附带的有效载荷来实现这些目标。坚固的设计与ISS的可见度,振动和污染环境兼容,因此NICER可以以较低的风险利用已建立的基础架构。掠入射光学系统与硅漂移检测器相结合,积极指向整个天空的半球,将提供光子计数光谱学和与GPS时间和位置相对应的定时,并具有高通量和相对较低的背景。除了通过与无线电和γ射线观测的协调来推进对中子星研究至关重要的多波长方法外,NICER还可以提供快速响应能力,以针对瞬变,RXTE后到XTE的X射线定时天体物理学研究中的连续性拟议的Guest Observer计划,以及软X射线定时科学的新发现空间。©(2012)版权所有,美国光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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