敖德萨地磁异常区3C 144射电源地磁场快速变化与电离层闪烁对比结果

Q4 Physics and Astronomy Astronomical and Astrophysical Transactions Pub Date : 2022-07-01 DOI:10.17184/eac.6481
A. Sukharev, M. Orlyuk, M. Ryabov, L. Sobitniak, V. Bezrukovs, S. Panishko, A. Romenets
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引用次数: 0

摘要

2017年11月至2019年5月,在敖德萨梅奇尼科夫国立大学天文台监测了地磁场的变分分量,研究了敖德萨区域磁异常中心部分的短周期地磁变化。采用采样率为1hz的LEMI-008型精密磁通门磁强计进行测量。根据URAN-4低频相控天线阵在20和25 MHz频率上的数据,比较了3C 144射电源(金牛座A)的短周期地磁振荡(在某些情况下与地磁脉动周期重合)和电离层闪烁的表现。利用连续小波变换和基于傅立叶变换的带通滤波方法对数据进行逐日处理,筛选出地磁场和射电通量密度中包含不规则和准谐波变化的单个频段。对地磁扰动、风暴和平静条件下的观测结果进行了分析。在敖德萨磁异常最有趣的中心部分,对地磁场变化分量的长期监测数据已经获得,在此之前没有进行过此类研究。在磁暴和平静地磁场期间,对电离层闪烁的各种表现进行了观测。结果表明,在风暴期间,3C 144射电源的主闪烁时间尺度为1 ~ 3分钟。电离层闪烁偶尔表现出准周期结构。
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Results of comparison of fast variations of geomagnetic field and ionospheric scintillations of 3C 144 radio source in the area of Odessa geomagnetic anomaly
From November 2017 to May 2019 at the Astronomical Observatory of Odessa I.I. Mechnikov National University, the variational component of the geomagnetic field was monitored to study short-periodic geomagnetic variations in the central part of the Odessa regional magnetic anomaly. The measurements were carried out using a LEMI-008 precision fluxgate magnetometer with a sampling rate of 1 Hz. The aim of this work is to compare the manifestation of short-periodic geomagnetic oscillations (which in some cases coincided with periods of geomagnetic pulsations) and ionospheric scintillations of the 3C 144 radio source (Taurus A) according to the data of URAN-4 low-frequency phased antenna array at frequencies of 20 and 25 MHz. The data obtained were processed on a daily basis using the method of continuous wavelet transform, as well as band-pass filtering based on Fourier transform, to select individual frequency bands containing irregular and quasi-harmonic variations in the geomagnetic field and radio flux density. The analysis of results of the observations, during geomagnetic disturbances, storms and in calm conditions, is carried out. The data from long-term monitoring of variational component of the geomagnetic field in the most interesting, central part of the Odessa magnetic anomaly, where such studies have not been conducted before, have been obtained. Observations of various manifestations of ionospheric scintillations were carried out both during magnetic storms and during a calm geomagnetic field. It is shown that during storms, main scintillation time scale of the 3C 144 radio source is 1–3 minutes. Ionospheric scintillations occasionally show a quasiperiodic structure.
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Astronomical and Astrophysical Transactions
Astronomical and Astrophysical Transactions Physics and Astronomy-Instrumentation
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0.40
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0.00%
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期刊介绍: Astronomical and Astrophysical Transactions (AApTr) journal is being published jointly by the Euro-Asian Astronomical Society and Cambridge Scientific Publishers, The journal provides a forum for the rapid publication of material from all modern and classical fields of astronomy and astrophysics, as well as material concerned with astronomical instrumentation and related fundamental sciences. It includes both theoretical and experimental original research papers, short communications, review papers and conference reports.
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