帕克用乌克兰低频射电望远镜执行的太空任务的地面支持

Q4 Physics and Astronomy
V. Dorovskyy, V. Melnik, A. Brazhenko
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引用次数: 0

摘要

主题和目的。来自太阳的宽频率范围内的零星无线电发射包含了许多关于太阳日冕、其中射频源的参数以及太阳上和周围活动过程引起的参数变化的重要信息。这就是最近发射旨在研究太阳及其日冕的太空任务的原因,例如帕克太阳探测器(PSP)和太阳轨道飞行器。目前的工作旨在证明地面支持太空任务的有效性,首先是PSP,它是由乌克兰十米波长范围的大型射电望远镜提供的。另一个目的是根据地面仪器的校准数据对星载辐射计进行交叉校准。方法和方法。关于太阳日冕广泛使用的远程诊断技术之一是分析位于日冕内不同高度的源的射频发射参数。这种星载/地面联合调查的方法表明,在空间探测器PSP最接近太阳的过程中,同时观测某些个别事件,并在尽可能宽的频率范围内进行分析。提出了在重叠频带内可获得的数据,用于校准空间探测器的机载无线电接收器。后果为天基/地面联合观测提出的方法已得到证实。来自UTR-2和URAN-2射电望远镜以及太空探测器PSP的数据已被用于绘制2020年6月9日太阳爆发的动态光谱和偏振光谱,并对相关单个事件进行识别和比较。对于0.5到32MHz的频带,已经获得了这些突发的联合动态频谱。地面射电望远镜的校准数据允许在10至18 MHz的频带内对FIELDS-PSP数据采集模块中的HF接收器进行交叉校准。结论。该论文为乌克兰大型射电望远镜为PSP太空任务提供了有效的地面支持。已经给出了联合观测的例子,并描述了用于交叉校准FIELD-PSP模块HF接收器的方法。概述了进一步为太阳能空间研究任务提供地面支持的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GROUND BASED SUPPORT OF THE SPACE MISSION PARKER PERFORMED WITH UKRAINIAN LOW FREQUENCY RADIO TELESCOPES
Subject and Purpose. The sporadic radio emissions coming from the Sun in a broad frequency range contain a lot of important information concerning the solar corona, parameters of the radio frequency sources therein, and the parameter variations resulting from active processes on and about the Sun. These have been the reasons for recent launches of the space missions intended for stud- ying the Sun and its corona, such as the Parker Solar Probe (PSP) and the Solar Orbiter. The present work is aimed at demonstrating effectiveness of the ground-based support for the space missions, the PSP before all, which is provided by the large Ukrainian radio telescopes of the decameter wavelength range. Another purpose has been cross-calibration of the space-borne radiometer against calibrated data from a ground-based instrument. Methods and Methodology. One of the remote diagnosis techniques widely used with respect to the solar corona is to analyze parameters of the radio frequency emissions from sources lying at a variety of altitudes within the corona. The methodology of such joint, space-borne/terrestrial investigations suggests simultaneous observations of certain individual events during closest approach of the space probe PSP to the Sun, with analysis over a widest possible frequency range. The data obtainable within overlapping fre- quency bands are proposed for calibrating the on-board radio receivers of the space probe. Results. The methodology proposed for joint, space-based / terrestrial observations has been substantiated. Data from the UTR-2 and URAN-2 radio telescopes and the space probe PSP have been used to plot the dynamic and the polarization spectra of the June 9, 2020 solar bursts, with identification and comparison of the relevant individual events. A joint dynamic spectrum of these bursts has been obtained for the frequency band of 0.5 to 32 MHz. The calibrated data from the ground-based radio telescopes have allowed performing cross-calibration of the HF receiver in the FIELDS-PSP data taking module within the frequency band of 10 to 18 MHz. Conclusions. The paper has provided evidence of an effective ground-based support for the space mission PSP on the part of large Ukrainian radio telescopes. Examples of joint observations have been given, and a methodology described which is employed for cross-calibrating the HF receivers of the FIELD-PSP module. Prospects are outlined of further ground-based support for solar space research missions.
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
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