THE LONG-TERM OBSERVATIONS OF THE POWER COSMIC RADIO SOURCES ON THE RADIO TELESCOPE URAN-4 AT THE DECAMETER WAVE RANGE

O. A. Lytvynenko, S. Panishko, V. G. Derevyagin
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Abstract

The radio telescope (RT) URAN-4, located near the city of Odessa, started to work in 1987 as a component of the radio interferometric system URAN, which operates in the decameter range of radio waves and whose elements are placed in several points throughout Ukraine. The first successful VLBI observations of compact cosmic radio sources in the URAN system were carried out on the RT URAN-4–UTR-2 interferometer at the end of 1987. In the same period, a program was launched for regular observations of powerful cosmic radio sources 3C 144, 3C 274, 3C 405, 3C 461 at frequencies of 20 and 25 MHz in the radiometric mode. Later, several stages of modernization of radiometric equipment and systems for automation of observations took place. This made it possible by 2000 to switch to practically continuous radiometric monitoring of a group of these radio sources. Method of measuring and processing of the records of the radio sources passage through RT direction pattern, statistics of the observation records on time periods in dependence on the registration systems of the data obtained during more 35 years observations on the RT URAN-4 are considered in this paper. Some results are given which related to the study of the flux densities of the observing radio sources and ionospheric scintillation effect which is essential at the decameter wavelength range.
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在射电望远镜乌兰-4 上对十米波段的强宇宙射电源进行的长期观测
URAN-4射电望远镜(RT)位于敖德萨市附近,于1987年开始工作,是URAN射电干涉测量系统的一个组成部分。1987 年底,在 RT URAN-4-UTR-2 干涉仪上首次成功地对 URAN 系统中的紧凑宇宙射电源进行了 VLBI 观测。在同一时期,还启动了一项计划,在 20 和 25 兆赫频率上以辐射测量模式对强大的宇宙射电源 3C 144、3C 274、3C 405 和 3C 461 进行定期观测。后来,对辐射测量设备和观测自动化系统进行了几个阶段的现代化改造,到 2000 年,对一组射电源的辐射测量监测实际上已经可以连续进行了。本文讨论了测量和处理射电源通过 RT 方向模式的记录的方法,以及根据在 RT URAN-4 上长达 35 年的观测过程中获得的数据的登记系统对各时段观测记录进行统计的问题。本文给出了与观测射电源的通量密度和电离层闪烁效应研究有关的一些结果,电离层闪烁效应在分米波长范围内至关重要。
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