Space-Time Distribution of G-Band and Ca II H-Line Intensity Oscillations in Hinode/SOT-FG Observations
arXiv:0907.5001 · doi:10.1007/s11207-009-9481-z
Abstract
We study the space-time distributions of intensity fluctuations in 2 - 3 hour sequences of multi-spectral, high-resolution, high-cadence broad-band filtergram images (BFI) made by the SOT-FG system aboard the Hinode spacecraft. In the frequency range 5.5 < f < 8.0 mHz both G-band and Ca II H-line oscillations are suppressed in the presence of magnetic fields, but the suppression disappears for f > 10 mHz. By looking at G-band frequencies above 10 mHz we find that the oscillatory power, both at these frequencies and at lower frequencies too, lies in a mesh pattern with cell scale 2 - 3 Mm, clearly larger than normal granulation, and with correlation times on the order of hours. The mesh pattern lies in the dark lanes between stable cells found in time-integrated G-band intensity images. It also underlies part of the bright pattern in time-integrated H-line emission. This discovery may reflect dynamical constraints on the sizes of rising granular convection cells together with the turbulence created in strong intercellular downflows.
24 pages, 15 figures
References in corpus (4)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Solar Atmospheric Oscillations and the Chromospheric Magnetic Topology
- Properties of high-degree oscillation modes of the Sun observed with Hinode/SOT
- Do Long-Lived Features Really Exist in the Solar Photosphere? II. Contrast of Time-Averaged Granulation Images
Cited by in corpus (6)
- Radiative emission of solar features in the Ca II K line: comparison of measurements and models
- Nature of Quiet Sun Oscillations Using Data from the Hinode, TRACE, and SOHO Spacecraft
- Ultra-high-resolution Observations of MHD Waves in Photospheric Magnetic Structures
- Wave propagation in a solar quiet region and the influence of the magnetic canopy
- Observed Effect of Magnetic Fields on the Propagation of Magnetoacoustic Waves in the Lower Solar Atmosphere
- Oscillatory behavior of chromospheric fine structures in a network and a semi-active regions