Oscillatory behavior of chromospheric fine structures in a network and a semi-active regions
arXiv:1406.4507 · doi:10.1093/mnras/stu1204
Abstract
In the present work, we study the periodicities of oscillations in dark fine structures using observations of a network and a semi-active region close to the solar disk center. We simultaneously obtained spatially high resolution time series of white light images and narrow band images in the H line using the 2D Göttingen spectrometer, which were based on two Fabry-Perot interferometers and mounted in the VTT/Observatorio del Teide/Tenerife. During the observations, the H line was scanned at 18 wavelength positions with steps of 125 mÅ. We computed series of Doppler and intensity images by subtraction and addition of the H 0.3 Å and 0.7 Å pairs, sampling the upper chromosphere and the upper photosphere, respectively. Then we obtained power, coherence and phase difference spectra by performing a wavelet analysis to the Doppler fluctuations. Here, we present comparative results of oscillatory properties of dark fine structures seen in a network and a semi-active region.
8 pages, 5 figures, accepted for publication in MNRAS
References in corpus (5)
- Dynamic Fibrils are driven by Magnetoacoustic Shocks
- Solar Atmospheric Oscillations and the Chromospheric Magnetic Topology
- Magnetoacoustic shocks as driver of quiet Sun mottles
- Channeling 5-min photospheric oscillations into the solar outer atmosphere through small-scale vertical magnetic flux tubes
- Nature of Quiet Sun Oscillations Using Data from the Hinode, TRACE, and SOHO Spacecraft