Aims. Our aim is to gain a better understanding of the interaction between acoustic oscillations and the small-scale magnetic fields of the Sun. To this end, we examine the oscillatory properties of a network region and their relation to the magnetic configuration of the chromosphere. We link the oscillatory properties of a network region and their spatial variation with the variation of the parameters of the magnetic field. We investigate the effect of the magnetic canopy and the diverging flux tubes of the chromospheric network on the distribution of oscillatory power over the network and internetwork. Methods. We use a time series of high resolution filtergrams...
Observations show the increase of high-frequency wave power near magnetic network cores and active r...
Abstract. We analyze oscillations in the solar atmosphere using image sequences from the Transition ...
It has long been known that magnetic plage and sunspots are regions in which the power of acoustic w...
Context. We investigate the oscillatory behavior of the quiet solar chromosphere and its discrete co...
Aims. We investigate intensity oscillations observed simultaneously in the quiet chromosphere and in...
We investigate the oscillatory properties of the quiet solar chromosphere in relation to the underly...
Aims. We study intensity oscillations in the solar chromosphere and corona, above a quiet-Sun magnet...
Two sequences of solar images obtained by the Transition Region and Coronal Explorer in three UV pas...
Context. We present evidence for the conversion and transmission of wave modes on the magn...
We present new results of an international joint observing campaign, which was carried out in Septem...
Aims. We study intensity oscillations in the solar chromosphere and corona, above a quiet-Sun magnet...
We analyze the temporal behavior of Network Bright Points (NBPs), present in the solar atmosphere, u...
We study the nature of quiet-Sun oscillations using multi-wavelength observations from TRACE, Hinode...
Oscillation amplitudes are generally smaller within magnetically active regions like sunspots and pl...
Context. The exact nature of the quiet solar chromosphere and especially its temporal variation, ar...
Observations show the increase of high-frequency wave power near magnetic network cores and active r...
Abstract. We analyze oscillations in the solar atmosphere using image sequences from the Transition ...
It has long been known that magnetic plage and sunspots are regions in which the power of acoustic w...
Context. We investigate the oscillatory behavior of the quiet solar chromosphere and its discrete co...
Aims. We investigate intensity oscillations observed simultaneously in the quiet chromosphere and in...
We investigate the oscillatory properties of the quiet solar chromosphere in relation to the underly...
Aims. We study intensity oscillations in the solar chromosphere and corona, above a quiet-Sun magnet...
Two sequences of solar images obtained by the Transition Region and Coronal Explorer in three UV pas...
Context. We present evidence for the conversion and transmission of wave modes on the magn...
We present new results of an international joint observing campaign, which was carried out in Septem...
Aims. We study intensity oscillations in the solar chromosphere and corona, above a quiet-Sun magnet...
We analyze the temporal behavior of Network Bright Points (NBPs), present in the solar atmosphere, u...
We study the nature of quiet-Sun oscillations using multi-wavelength observations from TRACE, Hinode...
Oscillation amplitudes are generally smaller within magnetically active regions like sunspots and pl...
Context. The exact nature of the quiet solar chromosphere and especially its temporal variation, ar...
Observations show the increase of high-frequency wave power near magnetic network cores and active r...
Abstract. We analyze oscillations in the solar atmosphere using image sequences from the Transition ...
It has long been known that magnetic plage and sunspots are regions in which the power of acoustic w...