Nanoflash Distribution at the Solar Minimum

被引:2
|
作者
Bogachev, S. A. [1 ]
机构
[1] Russian Acad Sci IKI RAS, Space Res Inst, IKI RAS, Moscow 117997, Russia
基金
俄罗斯科学基金会;
关键词
ENERGY-DISTRIBUTION; LATITUDINAL DISTRIBUTION; FLARES;
D O I
10.1134/S0016793223600261
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
We use data from the Atmospheric Imaging Assembly (AIA) telescope on the Solar Dynamics Observatory (SDO) spacecraft in the 171 angstrom channel to investigate the spatial distribution of low-energy flares (nanoflashes). We have studied two periods: 05/20/2019 from 1200 UT to 1300 UT and 05/10/2020 from 1200 UT to 1300 UT. In total, we found 87974 nanoflares with an average formation rate of 6.0 x 10(-21) cm(-2) s(-1). For solar latitudes from 0 degrees up to 50 degrees the nanoflare formation rate is approximately uniform with a standard deviation of about 25%. We have found an asymmetry in the rate of formation of nanoflares in the southern and northern hemispheres of the Sun: the rate of formation of nanoflares in the southern hemisphere was 34-42% higher than in the northern one. During this period, the same asymmetry was also observed for ordinary flares. We also found a weak dependence of the nanoflare formation rate on the solar cycle: the number of nanoflares increases with higher solar activity.
引用
收藏
页码:441 / 448
页数:8
相关论文
共 50 条
  • [31] N-S Asymmetry and Solar Cycle Distribution of Superactive Regions from 1976 to 2017
    Zhao, Ming-Xian
    Le, Gui-Ming
    Liu, Yong-Hua
    UNIVERSE, 2022, 8 (11)
  • [32] Frequency dependence of solar flare occurrence rates—inferred from power-law distribution
    Qiwu Song
    Guangli Huang
    Yu Huang
    Astrophysics and Space Science, 2013, 347 : 15 - 19
  • [33] The height distribution of non-thermal X-ray sources in impulsive solar flares
    Fletcher, L
    ASTRONOMY & ASTROPHYSICS, 1996, 310 (02) : 661 - 671
  • [34] North-South Distribution and Asymmetry of GOES SXR Flares during Solar Cycle 24
    Joshi, Anita
    Chandra, Ramesh
    OPEN ASTRONOMY, 2019, 28 (01) : 228 - 235
  • [35] ACCURACY, UNCERTAINTIES, AND DELAY DISTRIBUTION OF ELECTRON TIME-OF-FLIGHT MEASUREMENTS IN SOLAR-FLARES
    ASCHWANDEN, MJ
    SCHWARTZ, RA
    ASTROPHYSICAL JOURNAL, 1995, 455 (02): : 699 - 714
  • [36] Frequency dependence of solar flare occurrence rates-inferred from power-law distribution
    Song, Qiwu
    Huang, Guangli
    Huang, Yu
    ASTROPHYSICS AND SPACE SCIENCE, 2013, 347 (01) : 15 - 19
  • [37] WAITING TIME DISTRIBUTION OF SOLAR ENERGETIC PARTICLE EVENTS MODELED WITH A NON-STATIONARY POISSON PROCESS
    Li, C.
    Zhong, S. J.
    Wang, L.
    Su, W.
    Fang, C.
    ASTROPHYSICAL JOURNAL LETTERS, 2014, 792 (02)
  • [38] Hydrodynamics of Small Transient Brightenings in the Solar Corona
    Rajhans, Abhishek
    Tripathi, Durgesh
    Kashyap, Vinay L.
    ASTROPHYSICAL JOURNAL, 2021, 917 (01):
  • [39] Observations of the Quiet Sun during the Deepest Solar Minimum of the Past Century with Chandrayaan-2 XSM: Sub-A-class Microflares outside Active Regions
    Vadawale, Santosh V.
    Mithun, N. P. S.
    Mondal, Biswajit
    Sarkar, Aveek
    Janardhan, P.
    Joshi, Bhuwan
    Bhardwaj, Anil
    Shanmugam, M.
    Patel, Arpit R.
    Adalja, Hitesh Kumar L.
    Goyal, Shiv Kumar
    Ladiya, Tinkal
    Tiwari, Neeraj Kumar
    Singh, Nishant
    Kumar, Sushil
    ASTROPHYSICAL JOURNAL LETTERS, 2021, 912 (01)
  • [40] Direct Evidence for Magnetic Reconnection in a Solar EUV Nanoflare
    Ulyanov, Artem S.
    Bogachev, Sergey A.
    Loboda, Ivan P.
    Reva, Anton A.
    Kirichenko, Alexey S.
    SOLAR PHYSICS, 2019, 294 (09)