English
Related papers

Related papers: Cut-off features in interplanetary solar radio typ…

200 papers

We have analysed radio type IV bursts in the interplanetary (IP) space at decameter-hectometer (DH) wavelengths, to find out their source origin and a reason for the observed directivity. We used radio dynamic spectra from the instruments…

Solar and Stellar Astrophysics · Physics 2018-11-06 Nasrin Talebpour Sheshvan , Silja Pohjolainen

Recent studies of interplanetary radio type II bursts and their source locations are reviewed. As these bursts are due to propagating shock waves, driven by coronal mass ejections, they can be followed to near-Earth distances and can be…

Solar and Stellar Astrophysics · Physics 2020-03-06 Silja Pohjolainen , Nasrin Talebpour Sheshvan

An intense type IV radio burst was observed by the STEREO Behind (STB) spacecraft located about 144 degres behind Earth. The burst was associated with a large solar eruption that occurred on the backside of the Sun (N05E151) close to the…

Solar and Stellar Astrophysics · Physics 2016-05-10 Nat Gopalswamy , Sachiko Akiyama , Pertti Mäkelä , Seiji Yashiro , Iver H. Cairns

This paper summarizes some recent results in the low-frequency radio physics of the Sun. The spatial domain covers the space from the outer corona to the orbit of Earth. The results obtained make use of radio dynamic spectra and white-light…

Solar and Stellar Astrophysics · Physics 2020-08-24 Nat Gopalswamy

In this article, the association of solar radio type IV bursts with active region location on the Sun is studied for the solar cycle 24. The active regions associated with moving and stationary type IV bursts are categorised as close to…

Solar and Stellar Astrophysics · Physics 2022-08-03 Anshu Kumari

New results in the study of solar type III bursts observed with the UTR-2 radio telescope are presented. The main feature of these bursts is a high-frequency cut-off. The solar activity manifestation was connected with the emergency of a…

Solar and Stellar Astrophysics · Physics 2018-12-19 A. A. Stanislavsky

Solar activity, in particular coronal mass ejections (CMEs), are often accompanied by bursts of radiation at metre wavelengths. Some of these bursts have a long duration and extend over a wide frequency band, namely, type IV radio bursts.…

Solar and Stellar Astrophysics · Physics 2021-01-20 Anshu Kumari , D. E. Morosan , E. K. J. Kilpua

Two similar-looking, two-part interplanetary type II burst events from 2003 and 2012 are reported and analysed. The 2012 event was observed from three different viewing angles, enabling comparisons between the spacecraft data. In these two…

Solar and Stellar Astrophysics · Physics 2025-03-07 Silja Pohjolainen

Context. The Sun is an active star and the source of the largest explosions in the solar system, such as flares and coronal mass ejections (CMEs). Flares and CMEs are powerful particle accelerators that can generate radio emission through…

Solar and Stellar Astrophysics · Physics 2019-03-13 D. E. Morosan , E. K. J. Kilpua , E. P. Carley , C. Monstein

The Sun is an active source of radio emission which is often associated with the acceleration of electrons arising from processes such as solar flares and coronal mass ejections (CMEs). At low radio frequencies (<100 MHz), numerous solar S…

Solar and Stellar Astrophysics · Physics 2019-04-17 D. E. Morosan , P. T. Gallagher

Solar type II radio bursts are the signature of particle acceleration by shock waves in the solar corona and interplanetary medium. The shocks originate in solar eruptions involving coronal mass ejections (CMEs) moving at super-Alfvenic…

Solar and Stellar Astrophysics · Physics 2019-12-17 Nat Gopalswamy , Pertti Mäkelä , Seiji Yashiro

The first appearance of radio type II burst emission at decameter-hectometer (DH) waves typically occurs in connection, and often simultaneously, with other types of radio emissions. As type II bursts are signatures of propagating shock…

Solar and Stellar Astrophysics · Physics 2021-05-18 Silja Pohjolainen , Nasrin Talebpour Sheshvan

We report on our study of radio source regions during the type II radio burst on 2013 May 22 based on direction finding (DF) analysis of the Wind/WAVES and STEREO/WAVES (SWAVES) radio observations at decameter-hectometric (DH) wavelengths.…

Solar and Stellar Astrophysics · Physics 2019-10-09 P. Mäkelä. N. Gopalswamy , M. J. Reiner , S. Akiyama , V. Krupar

Type II radio bursts are thought to be a signature of coronal shocks. In this paper, we analyze a short-lived type II burst that started at 07:40 UT on 2011 February 28. By carefully checking white-light images, we find that the type II…

Solar and Stellar Astrophysics · Physics 2015-05-20 W. Su , X. Cheng , M. D. Ding , P. F. Chen , J. Q. Sun

We report and examine the observation of an unusual and rare in-situ electron observation associated with a solar type III radio burst on 24 December 1996. This radio event was accompanied by high energy electrons, measured by the Solid…

Type II solar radio bursts are commonly associated with shocks generated by coronal mass ejections (CMEs), where plasma waves are excited by magnetohydrodynamic (MHD) processes and converted into radio waves at the local plasma frequency or…

Solar and Stellar Astrophysics · Physics 2025-10-07 Anshu Kumari , Nat Gopalswamy

We present low-frequency (80-240 MHz) radio imaging of type III solar radio bursts observed by the Murchison Widefield Array (MWA) on 2015/09/21. The source region for each burst splits from one dominant component at higher frequencies into…

Solar and Stellar Astrophysics · Physics 2018-01-10 Patrick I. McCauley , Iver H. Cairns , John Morgan , Sarah E. Gibson , James C. Harding , Colin Lonsdale , Divya Oberoi

Type II radio bursts are signatures of shock waves generated by solar eruptions, observed at radio wavelengths. While metric (m) type II bursts originate in the lower corona, their longer-wavelength (up to kilometers) counterparts extend…

Solar and Stellar Astrophysics · Physics 2025-10-06 Pooja Devi , Ramesh Chandra , Rositsa Miteva , M. Syed Ibrahim , Kamal Joshi

The Sun produces highly dynamic and eruptive events that can drive shocks through the corona. These shocks can accelerate electrons, which result in plasma emission in the form of a type II radio burst. Despite the large number of type II…

Solar and Stellar Astrophysics · Physics 2021-03-10 Ciara A. Maguire , Eoin P. Carley , Pietro Zucca , Nicole Vilmer , Peter T. Gallagher

Mark 4, COR1/STEREO and LASCO/SOHO data analysis shows that at least a portion of type II radio bursts observed in the corona occurs in the presence of a CME, but in the absence of a shock ahead of them. A drift current instability in the…

Solar and Stellar Astrophysics · Physics 2011-05-19 V. G. Eselevich , M. V. Eselevich
‹ Prev 1 2 3 10 Next ›