Heating Mechanisms for Intermittent Loops in Active Region Cores from AIA/SDO EUV Observations
نویسندگان
چکیده
We investigate intensity variations and energy deposition in five coronal loops in active region cores. These were selected for their strong variability in the AIA/SDO 94 Å intensity channel. We isolate the hot Fe xviii and Fe xxi components of the 94 Å and 131 Å by modeling and subtracting the “warm” contributions to the emission. HMI/SDO data allow us to focus on “inter-moss” regions in the loops. The detailed evolution of the inter-moss intensity time series reveals loops that are impulsively heated in a mode compatible with a nanoflare storm, with a spike in the hot 131 Å signals leading and the other five EUV emission channels following in progressive cooling order. A sharp increase in electron temperature tends to follow closely after the hot 131 Å signal confirming the impulsive nature of the process. A cooler process of growing emission measure follows more slowly. The Fourier power spectra of the hot 131 Å signals, when averaged over the five loops, present three scaling regimes with break frequencies near 0.1 min−1 and 0.7 min−1. The low frequency regime corresponds to 1/f noise; the intermediate indicates a persistent scaling process and the high frequencies show white noise. Very similar results are found for the energy dissipation in a 2D “hybrid” shell model of loop magneto-turbulence, based on reduced magnetohydrodynamics, that is compatible with nanoflare statistics. We suggest that such turbulent dissipation is the energy source for our loops. Key word: Sun: corona Online-only material: color figures
منابع مشابه
Microflare Heating of a Solar Active Region Observed with NuSTAR, Hinode/XRT, and SDO/AIA
NuSTAR is a highly sensitive focusing hard X-ray (HXR) telescope and has observed several small microflares in its initial solar pointings. In this paper, we present the first joint observation of a microflare with NuSTAR and Hinode/XRT on 2015 April 29 at ∼11:29 UT. This microflare shows heating of material to several million Kelvin, observed in Soft X-rays (SXRs) with Hinode/XRT, and was fain...
متن کاملAutomated Temperature and Emission Measure Analysis of Coronal Loops and Active Regions Observed with AIA/SDO
We developed numerical codes designed for automated analysis of AIA/SDO image datasets in the 6 coronal filters, including: (i) coalignment test between different wavelengths with measurements of the altitude of the EUV-absorbing chromosphere, (ii) self-calibration by empirical correction of instrumental response functions, (iii) automated generation of differential emission measure (DEM) distr...
متن کاملSDO/AIA Observation of Kelvin-Helmholtz Instability in the Solar Corona
We present observations of the formation, propagation and decay of vortexshaped features in coronal images from the Solar Dynamics Observatory (SDO) associated with an eruption starting at about 2:30UT on Apr 8, 2010. The series of vortices formed along the interface between an erupting (dimming) region and the surrounding corona. They ranged in size from several to ten arcseconds, and traveled...
متن کاملLong Duration Flare Emission: Impulsive Heating or Gradual Heating?
Flare emissions in X-ray and EUV wavelengths have previously been modeled as the plasma response to impulsive heating from magnetic reconnection. Some flares exhibit gradually evolving X-ray and EUV light curves, which are believed to result from superposition of an extended sequence of impulsive heating events occurring in different adjacent loops or even unresolved threads within each loop. I...
متن کاملCooling Active Region Loops Observed With SXT and TRACE
An Impulsive Heating Multiple Strand (IHMS) Model is able to reproduce the observational characteristics of EUV (∼ 1MK) active region loops. This model implies that some of the loops must reach temperatures where X-ray filters are sensitive (> 2.5MK) before they cool to EUV temperatures. Hence, some bright EUV loops must be preceded by bright X-ray loops. Previous analysis of X-ray and EUV acti...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2018