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Large-angle OBServaTory with Energy Resolution for Synoptic X-ray Studies (LOBSTER-SXS)

机译:具能量分辨率的大角度OBServaTory,用于天气X射线研究(LOBSTER-SXS)

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The soft X-ray band hosts a larger, more diverse range of variable sources than any other region of the electromagnetic spectrum. They are stars, compact binaries, SMBH's, the X-ray components of Gamma-Ray Bursts, their X-ray afterglows, and soft X-ray flares from supernova. We describe a concept for a very wide field (~ 4 ster) modular hybrid X-ray telescope system that can measure positions of bursts and fast transients with as good as arc second accuracy, the precision required to identify fainter and increasingly more distant events. The dimensions and materials of all telescope modules are identical. All but two are part of a cylindrical lobster-eye telescope with flat double sided mirrors that focus in one dimension and utilize a coded mask for resolution in the other. Their positioning accuracy is about an arc minute. The two remaining modules are made from the same materials but configured as a Kirkpatrick-Baez telescope with longer focal length that focuses in two dimensions. When pointed it refines the hybrid telescope's arc minute positions to an arc second and provides larger effective area for spectral and temporal measurements. Above 10 keV the mirrors act as an imaging collimator with positioning capability. For short duration events this hybrid focusing/coded mask system is more sensitive and versatile than either a 2D coded mask or a 2D lobster-eye telescope. Very wide field X-ray telescopes have become feasible as the ability to fabricate large area arrays of CCD and CMOS detectors has improved. This instrument's function in the soft X-ray band is similar to that of Swift in hard X-ray band and there is a larger variety of fast transients in the soft X-ray band. An instrument with considerably more sensitivity than current wide field X-ray detectors would be compatible with a modest NASA Explorer mission.
机译:与电磁频谱的任何其他区域相比,柔软的X射线波段具有更大,更多样化的可变源范围。它们是恒星,紧凑的双星,SMBH,伽马射线爆发的X射线成分,X射线余辉以及超新星产生的软X射线。我们描述了一种非常宽广的(约4 ster)模块化混合X射线望远镜系统的概念,该系统可以测量突发位置和快速瞬变的位置,其精确度高达弧秒,即识别微弱和越来越远的事件所需的精度。所有望远镜模块的尺寸和材料相同。除了两个以外,其他所有部件都是圆柱形龙虾眼望远镜的一部分,该望远镜具有平坦的双面反射镜,在一个维度上聚焦,而在另一个维度上使用编码遮罩进行分辨率。它们的定位精度约为一弧分。其余两个模块由相同的材料制成,但配置为焦距较长的柯克帕特里克·贝兹望远镜,可在两个维度上聚焦。当指向时,它将混合望远镜的弧度分钟位置精确到弧度秒,并为光谱和时间测量提供了更大的有效面积。高于10 keV时,镜子可充当具有定位功能的成像准直仪。对于短时间事件,此混合聚焦/编码遮罩系统比2D编码遮罩或2D龙虾眼望远镜更灵敏,用途更广。随着制造CCD和CMOS检测器大面积阵列的能力的提高,超广角X射线望远镜变得可行。该仪器在软X射线波段中的功能类似于Swift在硬X射线波段中的功能,并且在软X射线波段中存在多种快速瞬变。灵敏度比当前的广角X射线探测器高得多的仪器将可以与NASA适度的探索者任务兼容。

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