首页> 外文会议>NATO Advanced Study Institute on the Role of VLBI in Astrophysics, Astrometry and Geodesy >NON-THERMAL EMISSION FROM EXTRAGALACTIC RADIO SOURCES: A HIGH RESOLUTION - BROAD BAND APPROACH
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NON-THERMAL EMISSION FROM EXTRAGALACTIC RADIO SOURCES: A HIGH RESOLUTION - BROAD BAND APPROACH

机译:紫外线无线电源的非热排放:高分辨率 - 广泛的乐队方法

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In the framework of the study of extragalactic radio sources, we will focus on the importance of the spatial resolution at different wavelengths, and of the combination of observations at different frequency bands. In particular, a substantial step forward in this field is now provided by the new generation X-ray telescopes which are able to image radio sources in between 0.1-10 keV with a spatial resolution comparable with that of the radio telescopes (VLA) and of the optical telescopes. After a brief description of some basic aspects of acceleration mechanisms and of the radiative processes at work in the extragalactic radio sources, we will focus on a number of recent radio, optical and X-ray observations with arcsec resolution, and discuss the deriving constraints on the physics of these sources.
机译:在突出式无线电源研究的框架中,我们将专注于不同波长的空间分辨率的重要性,以及不同频带的观察组合。特别地,该领域的正常步骤现在由新一代X射线望远镜提供,该新一代X射线望远镜能够通过与无线电望远镜(VLA)的空间分辨率相当的空间分辨率来图像在0.1-10keV之间的无线电源。光学望远镜。在简要描述加速机制的一些基本方面和脱喉无线电源的工作中的辐射过程之后,我们将专注于近期具有ArcSec分辨率的最近的无线电,光学和X射线观测,并讨论导出的限制这些来源的物理学。

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