RATAN-600在西区射电望远镜运行模式下的波束图和无线电源漂移扫描

IF 1.3 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
E. K. Majorova, N. N. Bursov, S. A. Trushkin
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引用次数: 0

摘要

本文给出了在4.7GHz频率下,西区射电望远镜工作模式下点源RATAN-600波束方向图(BP)和BP漂移扫描的计算结果。在计算BP时,考虑了该操作模式下射电望远镜天线系统的特性:使用大型次镜、主镜的不对称辐射以及主馈源(馈源喇叭)沿次镜焦线的位置。通过BP计算的震源漂移扫描的形状与从西区观测获得的震源实验漂移扫描的结果进行了比较。当射电望远镜与西区和北区一起工作时,计算并比较了漂移扫描的主要特征。提出了一种确定BP中心截面外源通量密度的新方法,并对其精度进行了估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

RATAN-600 Beam Pattern and Drift Scans of Radio Sources in the Radio Telescope Operation Mode with the West Sector

RATAN-600 Beam Pattern and Drift Scans of Radio Sources in the Radio Telescope Operation Mode with the West Sector

The paper presents results of calculating the RATAN-600 beam pattern (BP) and BP drift scans of point radio sources in the West Sector radio telescope operation mode at a frequency of 4.7 GHz. When calculating the BP, the properties of the radio telescope antenna system in this operation mode were taken into account: the use of a large secondary mirror, asymmetric radiation of the primary mirror, and the location of the primary feeds (feed horns) along the focal line of the secondary mirror. The shape of the calculated drift scans of sources through the BP is compared with that of the experimental drift scans of sources obtained from observations in the West Sector. The main characteristics of the drift scans are calculated and compared when the radio telescope operates with the West and North Sectors. A new method for determination of flux densities of sources passing through the BP outside its central cross-section is proposed, and its accuracy is estimated.

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来源期刊
Astrophysical Bulletin
Astrophysical Bulletin 地学天文-天文与天体物理
CiteScore
2.00
自引率
33.30%
发文量
31
审稿时长
>12 weeks
期刊介绍: Astrophysical Bulletin is an international peer reviewed journal that publishes the results of original research in various areas of modern astronomy and astrophysics, including observational and theoretical astrophysics, physics of the Sun, radio astronomy, stellar astronomy, extragalactic astronomy, cosmology, and astronomy methods and instrumentation.
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