EXPLORATION OF THE SOLAR DECAMETER RADIO EMISSION WITH THE UTR-2 RADIO TELESCOPE

Purpose: The overview of the scientifi c papers devoted to the study of the solar decameter radio emission with the world’s largest UTR-2 radio telescope (Ukraine) published for the last 50 years. Design/methodology/approach: The study and analysis of the scientifi c papers on both sporadic and q...

Full description

Bibliographic Details
Main Authors: V. N. Melnik, A. A. Konovalenko, V. V. Dorovskyy, A. Lecacheux, H. O. Rucker, M. V. Shevchuk
Format: Article
Language:English
Published: National Academy of Sciences of Ukraine, Institute of Radio Astronomy 2021-03-01
Series:Radio Physics and Radio Astronomy
Subjects:
sun
Online Access:http://rpra-journal.org.ua/index.php/ra/article/view/1350/pdf
id doaj-2e4805b135c24093b533a1fe40988437
record_format Article
spelling doaj-2e4805b135c24093b533a1fe409884372021-03-12T08:49:58ZengNational Academy of Sciences of Ukraine, Institute of Radio AstronomyRadio Physics and Radio Astronomy1027-96362415-70072021-03-01261748910.15407/rpra26.01.074EXPLORATION OF THE SOLAR DECAMETER RADIO EMISSION WITH THE UTR-2 RADIO TELESCOPEV. N. Melnik0A. A. Konovalenko1V. V. Dorovskyy2A. Lecacheux3H. O. Rucker4M. V. Shevchuk5Institute of Radio Astronomy, National Academy of Sciences of Ukraine, 4, Mystetstv St., Kharkiv, 61002, Ukraine Institute of Radio Astronomy, National Academy of Sciences of Ukraine, 4, Mystetstv St., Kharkiv, 61002, Ukraine Institute of Radio Astronomy, National Academy of Sciences of Ukraine, 4, Mystetstv St., Kharkiv, 61002, Ukraine LESIA, Observatoire de Paris, CNRS, PSL/SU/UPMC/UPD/SPC, 5, Place Jules Janssen, Meudon, F-92195, France Komission für Astronomie, Österreichischen Akademie der Wissenschaften, 6, Schmiedlstrasse, Graz, 8042, A Austria Institute of Radio Astronomy, National Academy of Sciences of Ukraine, 4, Mystetstv St., Kharkiv, 61002, UkrainePurpose: The overview of the scientifi c papers devoted to the study of the solar decameter radio emission with the world’s largest UTR-2 radio telescope (Ukraine) published for the last 50 years. Design/methodology/approach: The study and analysis of the scientifi c papers on both sporadic and quiet (thermal) radiation of the Sun recorded with the UTR-2 radio telescope at the decameter wavelength range. Findings: The most signifi cant observational and theoretical results of the solar radio emission studies obtained at the Institute of Radio Astronomy of the National Academy of Sciences of Ukraine for the last 50 years are given. Conclusions: For the fi rst time, at frequencies below 30 MHz, the Type II bursts, Type IV bursts, S-bursts, drift pairs and spikes have been recorded. The dependences of these bursts parameters on frequency within the frequency band of 9 to 30 MHz were obtained. The models of their generation and propagation were suggested. Moreover, for the fi rst time the fi ne time-frequency structures of the Type III bursts, Type II bursts, Type IV bursts, U- and J-bursts, S-bursts, and drift pairs have been observed due to the high sensitivity and high time-frequency resolutions of the UTR-2 radio telescope. The super-fi ne structure of Type II bursts with a “herringbone” structure was identifi ed, which has never been observed before. New types of bursts were discovered: “caterpillar” bursts, “dog-leg” bursts, Type III bursts with decay, Type III bursts with changing drift rate sign, Type III-like bursts, Jb- and Ub-bursts, etc. An interpretation of the unusually high drift rates and drift rates with alternating signs of the Type III-like bursts was suggested. Based on the dependence of spike durations on frequency, the coronal plasma temperature profi le at the heliocentric heights of 1.5–3RS was determined. Usage of the heliographic and interferometric methods gave the possibility to start studies of the spatial characteristics – sizes and locations of the bursts emission sources. Thus, it was shown that at the decameter band, the Type III burst durations were defi ned by the emission source linear sizes, whereas the spike durations were governed by the collision times in the source plasma. It was experimentally proved that the effective brightness temperatures of the sources of solar sporadic radio emission at the decameter band may reach values of 1014–1015 K. In addition, it was found that the radii of the quiet Sun at frequencies 20 and 25 MHz are close to the distances from the Sun at which the local plasma frequency is equal to the corresponding observed frequency of radio emission in the Baumbach–Allen model.http://rpra-journal.org.ua/index.php/ra/article/view/1350/pdfutr-2sundecameter radio emissionradio burstscorona
collection DOAJ
language English
format Article
sources DOAJ
author V. N. Melnik
A. A. Konovalenko
V. V. Dorovskyy
A. Lecacheux
H. O. Rucker
M. V. Shevchuk
spellingShingle V. N. Melnik
A. A. Konovalenko
V. V. Dorovskyy
A. Lecacheux
H. O. Rucker
M. V. Shevchuk
EXPLORATION OF THE SOLAR DECAMETER RADIO EMISSION WITH THE UTR-2 RADIO TELESCOPE
Radio Physics and Radio Astronomy
utr-2
sun
decameter radio emission
radio bursts
corona
author_facet V. N. Melnik
A. A. Konovalenko
V. V. Dorovskyy
A. Lecacheux
H. O. Rucker
M. V. Shevchuk
author_sort V. N. Melnik
title EXPLORATION OF THE SOLAR DECAMETER RADIO EMISSION WITH THE UTR-2 RADIO TELESCOPE
title_short EXPLORATION OF THE SOLAR DECAMETER RADIO EMISSION WITH THE UTR-2 RADIO TELESCOPE
title_full EXPLORATION OF THE SOLAR DECAMETER RADIO EMISSION WITH THE UTR-2 RADIO TELESCOPE
title_fullStr EXPLORATION OF THE SOLAR DECAMETER RADIO EMISSION WITH THE UTR-2 RADIO TELESCOPE
title_full_unstemmed EXPLORATION OF THE SOLAR DECAMETER RADIO EMISSION WITH THE UTR-2 RADIO TELESCOPE
title_sort exploration of the solar decameter radio emission with the utr-2 radio telescope
publisher National Academy of Sciences of Ukraine, Institute of Radio Astronomy
series Radio Physics and Radio Astronomy
issn 1027-9636
2415-7007
publishDate 2021-03-01
description Purpose: The overview of the scientifi c papers devoted to the study of the solar decameter radio emission with the world’s largest UTR-2 radio telescope (Ukraine) published for the last 50 years. Design/methodology/approach: The study and analysis of the scientifi c papers on both sporadic and quiet (thermal) radiation of the Sun recorded with the UTR-2 radio telescope at the decameter wavelength range. Findings: The most signifi cant observational and theoretical results of the solar radio emission studies obtained at the Institute of Radio Astronomy of the National Academy of Sciences of Ukraine for the last 50 years are given. Conclusions: For the fi rst time, at frequencies below 30 MHz, the Type II bursts, Type IV bursts, S-bursts, drift pairs and spikes have been recorded. The dependences of these bursts parameters on frequency within the frequency band of 9 to 30 MHz were obtained. The models of their generation and propagation were suggested. Moreover, for the fi rst time the fi ne time-frequency structures of the Type III bursts, Type II bursts, Type IV bursts, U- and J-bursts, S-bursts, and drift pairs have been observed due to the high sensitivity and high time-frequency resolutions of the UTR-2 radio telescope. The super-fi ne structure of Type II bursts with a “herringbone” structure was identifi ed, which has never been observed before. New types of bursts were discovered: “caterpillar” bursts, “dog-leg” bursts, Type III bursts with decay, Type III bursts with changing drift rate sign, Type III-like bursts, Jb- and Ub-bursts, etc. An interpretation of the unusually high drift rates and drift rates with alternating signs of the Type III-like bursts was suggested. Based on the dependence of spike durations on frequency, the coronal plasma temperature profi le at the heliocentric heights of 1.5–3RS was determined. Usage of the heliographic and interferometric methods gave the possibility to start studies of the spatial characteristics – sizes and locations of the bursts emission sources. Thus, it was shown that at the decameter band, the Type III burst durations were defi ned by the emission source linear sizes, whereas the spike durations were governed by the collision times in the source plasma. It was experimentally proved that the effective brightness temperatures of the sources of solar sporadic radio emission at the decameter band may reach values of 1014–1015 K. In addition, it was found that the radii of the quiet Sun at frequencies 20 and 25 MHz are close to the distances from the Sun at which the local plasma frequency is equal to the corresponding observed frequency of radio emission in the Baumbach–Allen model.
topic utr-2
sun
decameter radio emission
radio bursts
corona
url http://rpra-journal.org.ua/index.php/ra/article/view/1350/pdf
work_keys_str_mv AT vnmelnik explorationofthesolardecameterradioemissionwiththeutr2radiotelescope
AT aakonovalenko explorationofthesolardecameterradioemissionwiththeutr2radiotelescope
AT vvdorovskyy explorationofthesolardecameterradioemissionwiththeutr2radiotelescope
AT alecacheux explorationofthesolardecameterradioemissionwiththeutr2radiotelescope
AT horucker explorationofthesolardecameterradioemissionwiththeutr2radiotelescope
AT mvshevchuk explorationofthesolardecameterradioemissionwiththeutr2radiotelescope
_version_ 1724223029572009984