The Solar Internetwork. II. Magnetic Flux Appearance and Disappearance Rates
arXiv:1602.05892 · doi:10.3847/0004-637X/820/1/35
Abstract
Small-scale internetwork magnetic fields are important ingredients of the quiet Sun. In this paper we analyze how they appear and disappear on the solar surface. Using high resolution Hinode magnetograms, we follow the evolution of individual magnetic elements in the interior of two supergranular cells at the disk center. From up to 38 hr of continuous measurements, we show that magnetic flux appears in internetwork regions at a rate of Mx cm day ( Mx day over the entire solar surface). Flux disappears from the internetwork at a rate of Mx cm day ( Mx day) through fading of magnetic elements, cancellation between opposite-polarity features, and interactions with network patches, which converts internetwork elements into network features. Most of the flux is lost through fading and interactions with the network, at nearly the same rate of about 50 Mx cm day. Our results demonstrate that the sources and sinks of internetwork magnetic flux are well balanced. Using the instantaneous flux appearance and disappearance rates, we successfully reproduce the time evolution of the total unsigned flux in the two supergranular cells.
8 pages, 6 figures. Accepted in ApJ. An animation of the right panel of Figure 1 is available at http://spg.iaa.es/pub/downloads/gosic/figure1_right_panel.tar
References in corpus (6)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- A Substantial Amount of Hidden Magnetic Energy in the Quiet Sun
- Emergence of small-scale magnetic loops through the quiet solar atmosphere
- Solar Magnetic Tracking. I. Software Comparison and Recommended Practices
- The Solar Internetwork. I. Contribution to the Network Magnetic Flux
- Solar Magnetic Tracking. IV. The Death of Magnetic Features
Cited by in corpus (25)
- Critical Science Plan for the Daniel K. Inouye Solar Telescope (DKIST)
- The European Solar Telescope
- A Microfilament-Eruption Mechanism for Solar Spicules
- Estimation of the magnetic flux emergence rate in the quiet Sun from Sunrise data
- A statistical study of long-term evolution of coronal hole properties as observed by SDO
- A Statistical Study of Photospheric Magnetic Field Changes During 75 Solar Flares
- Signatures of ubiquitous magnetic reconnection in the lower solar atmosphere
- Small-scale dynamos: From idealized models to solar and stellar applications
- Small-scale magnetic flux emergence in the quiet Sun
- Chromospheric heating due to cancellation of quiet Sun internetwork fields
- Supergranular turbulence in a quiet Sun: Lagrangian coherent structures
- Statistical evolution of quiet-Sun small scale magnetic features using Sunrise observations
- Transport of internetwork magnetic flux elements in the solar photosphere
- Chromospheric Heating from Local Magnetic Growth and Ambipolar Diffusion Under Non-Equilibrium Conditions
- Occurrence and persistence of magnetic elements in the quiet Sun
- The solar internetwork. III. Unipolar versus bipolar flux appearance
- On the Magnetic Nature of an Exploding Granule as Revealed by Sunrise/IMaX
- Characteristics of Chromospheric Oscillation Periods in Magnetic Bright Points (MBPs)
- From incoherent field to coherent reconnection: understanding convection-driven coronal heating in the quiet Sun
- Structure and dynamics of the internetwork solar chromosphere: results of a small-scale dynamo simulation
- Temporal relations between magnetic bright points and the solar sunspot cycle
- Quantifying Properties of Photospheric Magnetic Cancellations in the Quiet Sun Internetwork
- Modeling of Chromospheric Features and Dynamics in Solar Plage
- Texture of average solar photospheric flows and the donut-like pattern
- Emergence of internetwork magnetic fields through the solar atmosphere