Context. Spectropolarimetric inversions are routinely used in the field of solar physics for the extraction of physical information from observations. The application to two-dimensional fields of view often requires the use of supercomputers with parallelized inversion codes. Even in this case, the computing time spent on the process is still very large. Aims. Our aim is to develop a new inversion code based on the application of convolutional neural networks that can quickly provide a three-dimensional cube of thermodynamical and magnetic properties from the interpreation of two-dimensional maps of Stokes profiles. Methods. We trained two different architectures of fully convolutional neural networks. To this end, we used the synthetic Sto...
Context.Inversion techniques are the most powerful methods to obtain information about the thermodyn...
A high-resolution 3-dimensional model of the photospheric magnetic field is essential for the invest...
Inversion techniques (ITs) allow us to infer the magnetic, dynamic, and thermal properties of the so...
Context. At present, an exponential growth in scientific data from current and upcoming solar observ...
We investigate the application of artificial neural networks (ANNs) for the interpretation of Stok...
Context. Interpreting spectropolarimetric observations of the solar atmosphere takes much longer tha...
Magnetic fields are responsible for a multitude of Solar phenomena, including such destructive event...
Aims.The thermodynamic and magnetic field structure of the solar photosphere is analyzed by means of...
Obtaining high-quality magnetic and velocity fields through Stokes inversion is crucial in solar phy...
Context. The major challenges for a fully polarized radiative transfer driven approach to Zeeman-D...
©2017 The American Astronomical Society. All rights reserved. We present a new method of Stokes inve...
During a solar flare, it is believed that reconnection takes place in the corona followed by fast en...
Context. Inversion codes are numerical tools used to infer physical properties from observations. De...
Context. Inversion codes are computer programs that fit a model atmosphere to the observed Stokes sp...
Context. The inversion of ring fit parameters to obtain subsurface flow maps in ring-diagram analysi...
Context.Inversion techniques are the most powerful methods to obtain information about the thermodyn...
A high-resolution 3-dimensional model of the photospheric magnetic field is essential for the invest...
Inversion techniques (ITs) allow us to infer the magnetic, dynamic, and thermal properties of the so...
Context. At present, an exponential growth in scientific data from current and upcoming solar observ...
We investigate the application of artificial neural networks (ANNs) for the interpretation of Stok...
Context. Interpreting spectropolarimetric observations of the solar atmosphere takes much longer tha...
Magnetic fields are responsible for a multitude of Solar phenomena, including such destructive event...
Aims.The thermodynamic and magnetic field structure of the solar photosphere is analyzed by means of...
Obtaining high-quality magnetic and velocity fields through Stokes inversion is crucial in solar phy...
Context. The major challenges for a fully polarized radiative transfer driven approach to Zeeman-D...
©2017 The American Astronomical Society. All rights reserved. We present a new method of Stokes inve...
During a solar flare, it is believed that reconnection takes place in the corona followed by fast en...
Context. Inversion codes are numerical tools used to infer physical properties from observations. De...
Context. Inversion codes are computer programs that fit a model atmosphere to the observed Stokes sp...
Context. The inversion of ring fit parameters to obtain subsurface flow maps in ring-diagram analysi...
Context.Inversion techniques are the most powerful methods to obtain information about the thermodyn...
A high-resolution 3-dimensional model of the photospheric magnetic field is essential for the invest...
Inversion techniques (ITs) allow us to infer the magnetic, dynamic, and thermal properties of the so...