Observations of Weak Galactic OH Masers in 1.6 GHz Frequency Band Using Irbene RT-32 Radio Telescope

IF 0.5 Q4 PHYSICS, APPLIED
K. Šķirmante, V. Bezrukovs, M. Bleiders, G. Jasmonts, N. Jekabsons, M. Nechaeva
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引用次数: 1

Abstract

Abstract Ventspils International Radio Astronomy Centre (Ventspils University of Applied Sciences) is implementing the scientific project “Complex Investigations of the Small Bodies in the Solar System” (lzp-2018/1-0401) related to the research of the small bodies in the Solar system (mainly, focusing on asteroids and comets) using methods of radio astronomy and signal processing. One of the research activities is weak hydroxyl (OH) radical observation in the radio range – single antenna observations using Irbene RT-32 radio telescope. To detect weak (0.1 Jy) OH masers of astronomical objects using radio methods, a research group in Ventspils adapted the Irbene RT-32 radio telescope working at 1665.402 and 1667.359 MHz frequencies. Spectral analysis using Fourier transform and continuous wavelet transform was applied to radio astronomical data from multiple observations related to weak OH maser detection. Multiple observation sessions of OH maser objects (R LMi, RU Ari, V524 Cas, OH 138.0+7.2, U Aur, etc) were carried out in 2020–2021.
Irbene RT-32射电望远镜对1.6 GHz频段弱星系OH脉泽的观测
文茨皮尔斯国际射电天文中心(文茨皮尔斯应用科学大学)正在实施科学项目“太阳系小天体的复杂研究”(lzp-2018/1-0401),该项目涉及利用射电天文学和信号处理方法研究太阳系小天体(主要以小行星和彗星为重点)。研究活动之一是利用Irbene RT-32射电望远镜进行射电范围内弱羟基(OH)自由基的单天线观测。为了利用射电方法探测天文物体的微弱(0.1 Jy) OH脉泽,文茨波尔的一个研究小组改装了Irbene RT-32射电望远镜,工作频率为1665.402和1667.359 MHz。将傅里叶变换和连续小波变换的频谱分析方法应用于弱OH脉泽探测中多次观测的射电天文数据。在2020-2021年对OH脉泽天体(R LMi、RU Ari、V524 Cas、OH 138.0+7.2、U Aur等)进行了多次观测。
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来源期刊
CiteScore
1.50
自引率
16.70%
发文量
41
审稿时长
5 weeks
期刊介绍: Latvian Journal of Physics and Technical Sciences (Latvijas Fizikas un Tehnisko Zinātņu Žurnāls) publishes experimental and theoretical papers containing results not published previously and review articles. Its scope includes Energy and Power, Energy Engineering, Energy Policy and Economics, Physical Sciences, Physics and Applied Physics in Engineering, Astronomy and Spectroscopy.
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