A monitoring campaign (2013-2020) of ESA's Mars Express to study interplanetary plasma scintillation | |
Kummamuru*, P.1; Calvés, G. Molera1; Cimò, G.2; Pogrebenko, S. V.2; Bocanegra-Bahamón, T. M.3; Duev, D. A.4; Said, M. D. Md2; Edwards, J.1; Ma, M.5; Quick, J.6; Neidhardt, A.7; Vicente, P. de8; Haas, R.9; Kallunki, J.10; Maccaferri, G.11; Colucci, G.12; Yang, W. J.13; Hao LF(郝龙飞)14; Weston, S.15; Kharinov, M. A.16; Mikhailov, A. G.16; Jung, T.17 | |
发表期刊 | PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF AUSTRALIA |
2023-04-12 | |
卷号 | 40 |
DOI | 10.1017/pasa.2023.12 |
产权排序 | 第14完成单位 |
收录类别 | SCI |
关键词 | spacecraft tracking space weather plasma solar wind interferometry |
摘要 | The radio signal transmitted by the Mars Express (MEX) spacecraft was observed regularly between the years 2013-2020 at X-band (8.42 GHz) using the European Very Long Baseline Interferometry (EVN) network and University of Tasmania's telescopes. We present amethod to describe the solar wind parameters by quantifying the effects of plasma on our radio signal. In doing so, we identify all the uncompensated effects on the radio signal and see which coronal processes drive them. From a technical standpoint, quantifying the effect of the plasma on the radio signal helps phase referencing for precision spacecraft tracking. The phase fluctuation of the signal was determined forMars' orbit for solar elongation angles from 0 to 180 deg. The calculated phase residuals allow determination of the phase power spectrum. The total electron content of the solar plasma along the line of sight is calculated by removing effects from mechanical and ionospheric noises. The spectral index was determined as -2.43 +/- 0.11 which is in agreement with Kolmogorov's turbulence. The theoretical models are consistent with observations at lower solar elongations however at higher solar elongation (>160 deg) we see the observed values to be higher. This can be caused when the uplink and downlink signals are positively correlated as a result of passing through identical plasma sheets. |
资助项目 | N/A |
项目资助者 | N/A |
语种 | 英语 |
学科领域 | 天文学 ; 空间天文学 ; 太阳与太阳系 |
文章类型 | Article |
出版者 | CAMBRIDGE UNIV PRESS |
出版地 | 32 AVENUE OF THE AMERICAS, NEW YORK, NY 10013-2473 USA |
ISSN | 1323-3580 |
URL | 查看原文 |
WOS记录号 | WOS:000970257500001 |
WOS研究方向 | Astronomy & Astrophysics |
WOS类目 | Astronomy & Astrophysics |
关键词[WOS] | CORONAL MASS EJECTION ; TROPOSPHERIC SCINTILLATION ; SOLAR CORONA ; RADIO ; FLUCTUATIONS ; PREDICTION ; SIGNAL ; VLBI |
引用统计 | |
文献类型 | 期刊论文 |
版本 | 出版稿 |
条目标识符 | http://ir.ynao.ac.cn/handle/114a53/26032 |
专题 | 射电天文研究组 |
通讯作者 | Kummamuru*, P. |
作者单位 | 1.School of Natural Sciences, University of Tasmania, Private Bag 37, Hobart, TAS 7005, Australia; 2.Joint Institute for VLBI-European Research Infrastructure Consortium, Oude Hogeveendijk 4, 7991, PD Dwingeloo, The Netherlands; 3.Jet Propulsion Laboratory, Pasadena, CA 91109, USA; 4.California Institute of Technology, Pasadena, CA 91125, USA; 5.Shanghai Astronomical Observatory, 80 Nandan Road, Shanghai, People’s Republic of China; 6.Hartebeesthoek Radio Astronomy Observatory, Krugersdorp, South Africa; 7.Technical University of Munich, Research Facility Satellite Geodesy, Geodetic Observatory Wettzell, Sackenrieder Str. 25, D-93444 Bad Kötzting, Germany; 8.Observatorio de Yebes (IGN), Yebes, Guadalajara, Spain; 9.Chalmers University of Technology, Onsala Space Observatory, Göteborg, Sweden; 10.Aalto University Metsöhovi Radio Observatory, Kylmälä, Finland; 11.National Institute for Astrophysics, RadioAstronomy Institute, Radio Observatory Medicina, Medicina, Italy; 12.E-geos S.p.A, Space Geodesy Center, Italian Space Agency, Matera, Italy; 13.Xinjiang Astronomical Observatory, Chinese Academy of Sciences, Urumqi, People’s Republic of China; 14.Yunnan Astronomical Observatory, Chinese Academy of Sciences, Kunming, People’s Republic of China; 15.Institute for Radio Astronomy & Space Research (IRASR) School of Engineering, Computer and Mathematical Sciences, Faculty of Design and Creative Technologies, Auckland University of Technology, Auckland, New Zealand; 16.Institute of Applied Astronomy of Russian Academy of Sciences, St Petersburg, Russia; 17.Korea Astronomy & Space Science Institute, 776 Daedeok-daero, Yuseong-gu, Daejeon, South Korea |
推荐引用方式 GB/T 7714 | Kummamuru*, P.,Calvés, G. Molera,Cimò, G.,et al. A monitoring campaign (2013-2020) of ESA's Mars Express to study interplanetary plasma scintillation[J]. PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF AUSTRALIA,2023,40. |
APA | Kummamuru*, P..,Calvés, G. Molera.,Cimò, G..,Pogrebenko, S. V..,Bocanegra-Bahamón, T. M..,...&Jung, T..(2023).A monitoring campaign (2013-2020) of ESA's Mars Express to study interplanetary plasma scintillation.PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF AUSTRALIA,40. |
MLA | Kummamuru*, P.,et al."A monitoring campaign (2013-2020) of ESA's Mars Express to study interplanetary plasma scintillation".PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF AUSTRALIA 40(2023). |
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