2021ApJ...910...41A


Query : 2021ApJ...910...41A

2021ApJ...910...41A - Astrophys. J., 910, 41-41 (2021/March-3)

Self-organized criticality in stellar flares.

ASCHWANDEN M.J. and GUDEL M.

Abstract (from CDS):

Power-law size distributions are the hallmarks of nonlinear energy dissipation processes governed by self-organized criticality (SOC). Here we analyze 75 data sets of stellar flare size distributions, mostly obtained from the Extreme-Ultraviolet Explorer and the Kepler mission. We aim to answer the following questions for size distributions of stellar flares. (i) What are the values and uncertainties of power-law slopes? (ii) Do power-law slopes vary with time? (iii) Do power-law slopes depend on the stellar spectral type? (iv) Are they compatible with solar flares? (v) Are they consistent with SOC models? We find that the observed size distributions of stellar flare fluences (or energies) exhibit power-law slopes of αE = 2.09 ± 0.24 for optical data sets observed with Kepler. The observed power-law slopes do not show much time variability and do not depend on the stellar spectral type (M, K, G, F, A, giants). In solar flares, we find that background subtraction lowers the uncorrected value of αE = 2.20 ± 0.22 to αE = 1.57 ± 0.19. Furthermore, most of the stellar flares are temporally not resolved in low-cadence (30 minutes) Kepler data, which causes an additional bias. Taking these two biases into account, the stellar flare data sets are consistent with the theoretical prediction N(x)∝x^-αx of SOC models, i.e., αE = 1.5. Thus, accurate power-law fits require automated detection of the inertial range and background subtraction, which can be modeled with the generalized Pareto distribution, finite-system size effects, and extreme event outliers.

Abstract Copyright: © 2021. The American Astronomical Society. All rights reserved.

Journal keyword(s): Stellar activity - Stellar flares - Solar flares - Astrostatistics

Simbad objects: 44

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Number of rows : 44
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 HD 2726 Er* 00 30 26.0632693104 -48 12 53.355477672   6.005 5.664     F2V 67 0
2 G 272-61B Er* 01 39 01.6377185550 -17 57 01.001240728           M6V 855 0
3 * 47 Cas ** 02 05 07.4242273 +77 16 52.824198   5.590 5.268     F0V 120 1
4 * kap01 Cet BY* 03 19 21.6964175772 +03 22 12.714979884 5.71 5.52 4.85 4.27 3.91 G5V 890 0
5 * eps Eri BY* 03 32 55.8444911587 -09 27 29.739493865 5.19 4.61 3.73 3.00 2.54 K2V 1933 1
6 NAME Taurus Complex SFR 04 41.0 +25 52           ~ 4421 0
7 HD 31305 * 04 55 48.2312009712 +30 20 16.446564852   7.70 7.60     A0 42 0
8 V* AB Dor TT* 05 28 44.8712165880 -65 26 55.199147208 8.259 7.856 6.999 6.496 5.993 K0V 1023 0
9 V* YY Gem BY* 07 34 37.4474327544 +31 52 10.179641496 11.60 10.56 9.27 7.69 6.67 M0.5VeFe-2 855 0
10 V* YZ CMi Er* 07 44 40.1723046464 +03 33 08.875227574 13.761 12.831 11.225 9.958 8.263 M4.0Ve 885 0
11 V* AD Leo Er* 10 19 36.2808181226 +19 52 12.010446571   10.82 9.52 9.19   dM3 1340 1
12 Wolf 359 Er* 10 56 28.9208702274 +07 00 53.003285286 16.706 15.541 13.507 11.684 9.507 dM6 722 0
13 HD 95735 Er* 11 03 20.1948195942 +35 58 11.576182057 10.030 8.960 7.520 5.99 4.79 M2+V 716 0
14 Wolf 424 ** 12 33 17.361480 +09 01 15.79224 15.398 14.313 12.467 10.937 8.988 M5.5V 321 0
15 V* RS CVn RS* 13 10 36.9077924448 +35 56 05.584994412 8.57 8.51 7.93 7.7   F6IV+G8IV 725 0
16 V* EK Dra BY* 14 39 00.2104038120 +64 17 29.979649860   8.243 7.604     G5VFe-0.7CH-1(k) 444 0
17 HD 152751 SB* 16 55 28.7575690 -08 20 10.787849 11.647 10.593 9.023 7.937 6.565 M3.5Ve 523 1
18 * del Sct dS* 18 42 16.4268984096 -09 03 09.188922060   5.04 4.71     F2II-III 484 0
19 2MASS J18423992+4356353 Ro* 18 42 39.9208552608 +43 56 35.473328124           ~ 17 0
20 2MASS J18574324+4435558 Ro* 18 57 43.2439789824 +44 35 55.770696996           G2V 27 0
21 TYC 3128-361-1 Ro* 19 02 36.1224324624 +42 48 31.723434252   12.62 11.89     ~ 25 0
22 2MASS J19044926+4437430 Ro* 19 04 49.2638270904 +44 37 43.095280872           ~ 18 0
23 [DCO2008] T-Lyr1-01439 EB* 19 06 13.4363561760 +46 57 26.446735476   11.56 11.23 11.060   F1V 21 0
24 TYC 3546-1479-1 dS* 19 07 46.8401965488 +46 54 18.676910052   11.5 10.9     ~ 7 0
25 BD+46 2628 Er* 19 07 47.5322955144 +46 54 46.550232108   10.45 9.13 8.741   G9III 8 0
26 TYC 3546-941-1 RG* 19 07 49.3734544464 +46 56 11.865353964   11.48 10.39     ~ 38 0
27 TYC 3550-936-1 Er* 19 09 40.4398554336 +49 30 05.160015900   11.75 11.08 10.698   G5IV 31 0
28 2MASS J19112813+4658590 Er* 19 11 28.1269604928 +46 58 59.048095188           ~ 10 0
29 TYC 3546-1037-1 dS* 19 11 41.7147401928 +46 55 12.692814996   12.39 12.87     A7III 11 0
30 2MASS J19145507+4655026 Ro* 19 14 55.0752828024 +46 55 02.620147188           ~ 12 0
31 2MASS J19151167+4654583 dS* 19 15 11.6667714024 +46 54 58.428550764           A2IV 10 0
32 2MASS J19162158+4120004 Ro* 19 16 21.5844966048 +41 20 00.467930040           ~ 19 0
33 TYC 3546-1073-1 HB* 19 17 44.3876947752 +46 59 26.027187936   12.29 10.81     K3III 24 0
34 BD+46 2665 HB* 19 18 07.4001166344 +46 57 26.081123400   11.09 9.89     K0 22 0
35 2MASS J19300381+4219595 Ro* 19 30 03.8210406600 +42 19 59.483713188           ~ 20 0
36 2MASS J19331778+4306178 Ro* 19 33 17.7823884480 +43 06 17.923891104           ~ 21 0
37 2MASS J19333950+4211298 Ro* 19 33 39.5079532080 +42 11 29.721833988           ~ 17 0
38 2MASS J19334832+4621539 Ro* 19 33 48.3237823392 +46 21 53.944662420           G0.5Va 25 0
39 2MASS J19383911+3837589 Ro* 19 38 39.1237673544 +38 37 58.887862176           ~ 18 0
40 2MASS J19475370+4804106 Ro* 19 47 53.6983162008 +48 04 10.710547500           ~ 13 0
41 2MASS J19513906+4733497 Ro* 19 51 39.0632457912 +47 33 49.683456468           ~ 18 0
42 V* FK Aqr SB* 22 38 45.5746238605 -20 37 16.087447076 11.714 10.595 9.083 8.073 6.876 M0Vep 281 0
43 V* EV Lac Er* 22 46 49.7312610268 +44 20 02.374381562   11.85 10.26 9.89   M4.0Ve 903 2
44 BD+19 5116 ** 23 31 52.17898 +19 56 14.1505 12.737 11.749 10.165 8.982 7.446 M4+M5 452 0

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