Nanoflares in quiet-Sun regions during solar cycle 24 are studied with the best available plasma diagnostics to derive their energy distribution and contribution to coronal heating during different levels of solar activity. Extreme ultraviolet (EUV) filters of the Atmospheric Imaging Assembly (AIA) onboard the Solar Dynamics Observatory (SDO) are used. We analyze 30 AIA/SDO image series between 2011 and 2018, each covering a $400 \times 400$ arcsec quiet-Sun field-of-view over two hours with a 12-second cadence. Differential emission measure (DEM) analysis is used to derive the emission measure (EM) and temperature evolution for each pixel. We detect nanoflares as EM-enhancements using a threshold-based algorithm and derive their thermal en...
It is generally agreed that small impulsive energy bursts called nanoflares are responsible for at l...
Nanoflares are thought to be one of the prime candidates that can heat the solar corona to its multi...
Much evidence suggests that the solar corona is heated impulsively, meaning that nanoflares may be u...
Aims. Nanoflares in quiet-Sun regions during solar cycle 24 are studied with the best available plas...
Small-scale magnetic reconnection processes in the form of nanoflares have become increasingly hypot...
In this paper, we examine 15 different active regions (ARs) observed with the Solar Dynamics Observa...
Nanoflares have been proposed as the main source of heating of the solar corona. However, detecting...
The Atmospheric Imaging Assembly (AIA) telescope on board the Solar Dynamics Observatory provides co...
Context. Recent analysis of the EUV emission of the solar Active Region observed with TRACE (Sakamot...
The quiet solar corona consists of myriads of loop-like features, with magnetic fields originating f...
Aims. We carried out a large statistical study of ubiquitous small-scale extreme-ultraviolet (EUV) b...
For many years it has been debated whether the quiet solar corona is heated by nanoflares and microf...
Context. Magnetic energy is required to heat the corona, the outer atmosphere of the Sun, to million...
The energy input into the lower solar corona by flare evaporation events has been modeled according ...
The temperature dependence of the emission measure (EM) in the core of active regions coronal loops ...
It is generally agreed that small impulsive energy bursts called nanoflares are responsible for at l...
Nanoflares are thought to be one of the prime candidates that can heat the solar corona to its multi...
Much evidence suggests that the solar corona is heated impulsively, meaning that nanoflares may be u...
Aims. Nanoflares in quiet-Sun regions during solar cycle 24 are studied with the best available plas...
Small-scale magnetic reconnection processes in the form of nanoflares have become increasingly hypot...
In this paper, we examine 15 different active regions (ARs) observed with the Solar Dynamics Observa...
Nanoflares have been proposed as the main source of heating of the solar corona. However, detecting...
The Atmospheric Imaging Assembly (AIA) telescope on board the Solar Dynamics Observatory provides co...
Context. Recent analysis of the EUV emission of the solar Active Region observed with TRACE (Sakamot...
The quiet solar corona consists of myriads of loop-like features, with magnetic fields originating f...
Aims. We carried out a large statistical study of ubiquitous small-scale extreme-ultraviolet (EUV) b...
For many years it has been debated whether the quiet solar corona is heated by nanoflares and microf...
Context. Magnetic energy is required to heat the corona, the outer atmosphere of the Sun, to million...
The energy input into the lower solar corona by flare evaporation events has been modeled according ...
The temperature dependence of the emission measure (EM) in the core of active regions coronal loops ...
It is generally agreed that small impulsive energy bursts called nanoflares are responsible for at l...
Nanoflares are thought to be one of the prime candidates that can heat the solar corona to its multi...
Much evidence suggests that the solar corona is heated impulsively, meaning that nanoflares may be u...