论文标题

Laue镜头:硬X/软伽玛射线天文学的光学元件

Laue lenses: Focusing optics for hard X/soft Gamma-ray Astronomy

论文作者

Ferro, L, Moita, M., Rosati, P., Lolli, R., Guidorzi, C., Frontera, F., Virgilli, E., Caroli, E., Auricchio, N., Stephen, J. B., Labanti, C., Fuschino, F., Campana, R., Ferrari, C., Squerzanti, S., Pucci, M., del Sordo, S., Gargano, C.

论文摘要

硬X/软伽马射线天文学是研究重要天体物理现象的关键领域,例如引力波的电磁对应物,伽马射线爆发,黑洞物理等。但是,由于缺乏在该能量频段中运行的聚焦仪器,因此对于能量范围的空间定位,成像功能和测量的灵敏度受到了$> 70美元的限制。为了阐明天体物理现象的性质,由于当前直接观察的望远镜的局限性尚不清楚,因此必须使用适合硬X/软伽马射线的新一代仪器。 Laue镜头可以是满足这些需求的答案。 Laue透镜是一种光学设备,由大量正确定向的晶体组成,能够通过LAUE衍射,将辐射集中到公共LAUE透镜聚焦中。与通常用于柔软X射线的放牧望远镜相反,LAUE镜头的传输配置使我们即使在数百KEV的能量下也能获得明显的敏感区域。在Ferrara大学,我们正在积极研究宽带LAUE镜头的模型化和建设。在这项工作中,我们将介绍Laue镜头背后的主要概念以及Trill的最新技术发展(对Laue镜头的技术准备增强)项目,致力于通过开发由Dermanim的圆柱形弯曲晶体制成的镜头部门的第一个晶状体扇形的原型来提高Laue镜头的技术准备。

Hard X-/soft Gamma-ray astronomy is a key field for the study of important astrophysical phenomena such as the electromagnetic counterparts of gravitational waves, gamma-ray bursts, black holes physics and many more. However, the spatial localization, imaging capabilities and sensitivity of the measurements are strongly limited for the energy range $>$70 keV due to the lack of focusing instruments operating in this energy band. A new generation of instruments suitable to focus hard X-/ soft Gamma-rays is necessary to shed light on the nature of astrophysical phenomena which are still unclear due to the limitations of current direct-viewing telescopes. Laue lenses can be the answer to those needs. A Laue lens is an optical device consisting of a large number of properly oriented crystals which are capable, through Laue diffraction, of concentrating the radiation into the common Laue lens focus. In contrast with the grazing incidence telescopes commonly used for softer X-rays, the transmission configuration of the Laue lenses allows us to obtain a significant sensitive area even at energies of hundreds of keV. At the University of Ferrara we are actively working on the modelization and construction of a broad-band Laue lens. In this work we will present the main concepts behind Laue lenses and the latest technological developments of the TRILL (Technological Readiness Increase for Laue Lenses) project, devoted to the advancement of the technological readiness of Laue lenses by developing the first prototype of a lens sector made of cylindrical bent crystals of Germanium.

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