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Scientific problems addressed by the Spektr-UV space project (world space Observatory-Ultraviolet)

机译:Spektr-UV空间项目(世界空间天文台-紫外线)解决的科学问题

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摘要

The article presents a review of scientific problems and methods of ultraviolet astronomy, focusing on perspective scientific problems (directions) whose solution requires UV space observatories. These include reionization and the history of star formation in the Universe, searches for dark baryonic matter, physical and chemical processes in the interstellar medium and protoplanetary disks, the physics of accretion and outflows in astrophysical objects, from Active Galactic Nuclei to close binary stars, stellar activity (for both low-mass and high-mass stars), and processes occurring in the atmospheres of both planets in the solar system and exoplanets. Technological progress in UV astronomy achieved in recent years is also considered. The well advanced, international, Russian-led Spektr-UV (World Space Observatory-Ultraviolet) project is described in more detail. This project is directed at creating a major space observatory operational in the ultraviolet (115-310 nm). This observatory will provide an effective, and possibly the only, powerful means of observing in this spectral range over the next ten years, and will be an powerful tool for resolving many topical scientific problems.
机译:本文介绍了紫外线天文学的科学问题和方法,着重介绍了需要解决紫外线空间观测的科学观点(方向)。其中包括电离作用和宇宙中恒星形成的历史,搜寻暗重质物质,星际介质和原行星盘中的物理和化学过程,天体物理物体的增生和外流物理学,包括活动银河核到密闭的双星,恒星活动(对于低质量和高质量的恒星),以及在太阳系和系外行星的两个行星的大气层中发生的过程。还考虑了近年来紫外线天文学的技术进步。由俄罗斯领导的国际先进的Spektr-UV(世界空间天文台-紫外线)项目将得到更详细的描述。该项目旨在建立一个主要的紫外线(115-310 nm)空间观测站。该观测站将在未来十年内提供有效的,可能是唯一的,有力的手段在此光谱范围内进行观测,并将成为解决许多主题科学问题的有力工具。

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