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Featured researches published by Stefano Giordano.


Astronomy and Astrophysics | 2008

The photospheric structure of a solar pore with light bridge

Stefano Giordano; F. Berrilli; D. Del Moro; V. Penza

Context. Pores are among the photospheric features that form when the magnetic field emerges onto the solar surface. In pores or sunspots, light bridges are bright features that separate umbral areas into two or more irregular regions. Aims. We study the structure of a solar pore (AR10812) with a light bridge. Methods. We analyzed both broad-band and narrow-band images acquired with the Interferometric BI-dimensional Spectrometer at the adaptive optics channel of the NSO/Dunn Solar Telescope. Narrow-band images acquired in the photospheric Fexa0Ixa0709.04xa0nmxa0line were used to determine the line-of-sight velocity field. Results. The roundish shape of the pore allows us to derive the radial profiles of both intensity and vertical velocity. The pore has a downward velocity, of about –200xa0mxa0s -1 , and is surrounded by an annular downflow structure with an average velocity of about –300xa0mxa0s -1 with respect to the nearby quiet sun. The light bridge shows a long narrow dark structure running along its axis. Corresponding to this dark lane, we measure a weak upflow of about 70xa0mxa0s -1 , flanked by a downflow of about 150xa0mxa0s -1 with respect to the pore. The topology of this velocity structure resembles a convective roll. The anticorrelation between continuum intensity and photospheric velocity may be due to the higher gas pressure in a photospheric field-free cusp, above the light bridge, located between two magnetic walls. We present an analytical model capable of reproducing the observations.


Archive | 2010

Coupling photosphere and chromosphere through plasma waves.

M. Stangalini; F. Berrilli; D. Del Moro; Alberto Egidi; Stefano Giordano; P. F. Moretti; B. Viticchie


American Geophysical Union, Fall Meeting 2009, abstract #SH51A-1263 | 2009

Analysis of Supergranulation Pattern: the Void Probability Function of Solar Magnetograms

F. Berrilli; Stefano Giordano; D. Del Moro


Archive | 2007

Intensity and Velocity Structure of a Light Bridge in a Pore Seen by IBIS at NSO/DST: Analysis and Interpretation

F. Berrilli; Stefano Giordano; D. Del Moro; V. Penza


Archive | 2007

Dynamics of a solar pore with light bridge

Stefano Giordano; F. Berrilli; D. Del Moro; V. Penza


Archive | 2006

3D Reconstruction of Photospheric Velocity Fields Inside a Magnetic Network Cell

D. Del Moro; Stefano Giordano; F. Berrilli


Archive | 2006

Dynamics of photosphere in presence of magnetic field

Stefano Giordano; F. Berrilli; D. Del Moro


Archive | 2006

SINERGIES, the Italian Network for Ground-Based Observations of Sun-Earth Phenomena .

E. Amata; F. Berrilli; M. Candidi; Sergio Cantarano; Mauro Centrone; Giuseppe Consolini; L. Contarino; S. Criscuoli; M. de Lauretis; D. Del Moro; Alberto Egidi; Ilaria Ermolli; P. Francia; Stefano Giordano; F. Giorgi; M. Oliviero; M. Magrí; F. Marcucci; S. Massetti; M. Messerotti; M. Parisi; C. Perna; Ermanno Pietropaolo; Patrizia Romano; G. Severino; D. Spadaro; M. Storini; M. Vellante; U. Villante; P. Zlobec


Advances in Space Research | 2006

First results from IBIS: Photosphere dynamics and network magnetic elements

Stefano Giordano; D. Del Moro; F. Berrilli


2nd Solar Orbiter Workshop | 2006

A pixel silicon detector for charge identification in Solar Energetic Particles onboard Solar Orbiter

R. Sparvoli; A. Basili; F. Berrilli; Bidoli; M. Casolino; D. Del Moro; M De Pascale; Alberto Egidi; T Froysland; Stefano Giordano; L. Marcelli; Malvezzi; M. Minori; P. Picozza; E. Reali; B Vitichie; Bonvicini; G. Castellini

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F. Berrilli

University of Rome Tor Vergata

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D. Del Moro

University of Rome Tor Vergata

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V. Penza

University of Rome Tor Vergata

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A. Basili

Sapienza University of Rome

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E. Reali

University of Rome Tor Vergata

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