Research output: Contribution to journal › Article › peer-review
Possible link between solar decimeter-wave microbursts and noise storms. / Yasnov, L. V.; Bogod, V. M.; Stupishin, A. G.
In: Astrophysical Bulletin, Vol. 62, No. 4, 2007, p. 369-377.Research output: Contribution to journal › Article › peer-review
}
TY - JOUR
T1 - Possible link between solar decimeter-wave microbursts and noise storms
AU - Yasnov, L. V.
AU - Bogod, V. M.
AU - Stupishin, A. G.
PY - 2007
Y1 - 2007
N2 - A statistical study of long-lived solar microbursts (MB) at decimeter-wave frequencies has been performed for the first time. The data are obtained with the radio telescope RATAN-600 and have the form of one-dimensional scans of intensity and circular polarization with a sensitivity of about 5 10 Jy. MB fluxes and polarization degrees lie in the 0.001 0.1 s.f.u. and 10% to 100% intervals, respectively, and individual pulses have durations of one to two seconds. Microbursts can be observed in the same active region over several days. MB are compared to noise storms (NS) at meter-wave frequencies. The analysis indicates that MB are NS manifestations at decimeter-wave frequencies. The possible cause of the significant difference between the radio fluxes of MB and NS is analyzed. It is shown within the framework of a unified model of the generation of MB and NS radio waves that unlike type I bursts MB are associated with the incoherent mechanism of the generation of Langmuir waves. MB emission is, by its nature, closer to the continuous emission of noise storms, but it is pulse-like because of the high rate of pitch-angular diffusion.
AB - A statistical study of long-lived solar microbursts (MB) at decimeter-wave frequencies has been performed for the first time. The data are obtained with the radio telescope RATAN-600 and have the form of one-dimensional scans of intensity and circular polarization with a sensitivity of about 5 10 Jy. MB fluxes and polarization degrees lie in the 0.001 0.1 s.f.u. and 10% to 100% intervals, respectively, and individual pulses have durations of one to two seconds. Microbursts can be observed in the same active region over several days. MB are compared to noise storms (NS) at meter-wave frequencies. The analysis indicates that MB are NS manifestations at decimeter-wave frequencies. The possible cause of the significant difference between the radio fluxes of MB and NS is analyzed. It is shown within the framework of a unified model of the generation of MB and NS radio waves that unlike type I bursts MB are associated with the incoherent mechanism of the generation of Langmuir waves. MB emission is, by its nature, closer to the continuous emission of noise storms, but it is pulse-like because of the high rate of pitch-angular diffusion.
KW - 94.20.wf
KW - 96.60.P-
KW - 96.60.Tf
U2 - 10.1134/S1990341307040086
DO - 10.1134/S1990341307040086
M3 - Article
VL - 62
SP - 369
EP - 377
JO - Astrophysical Bulletin
JF - Astrophysical Bulletin
SN - 1990-3413
IS - 4
ER -
ID: 36372712