To investigate the statistical properties of the photospheric magnetic fields underlying coronal holes (CHs) and “normal” coronal regions a classical technique, the signed measure, is used. This technique allows to characterize the scaling behavior and the topology of sign-oscillating magnetic structures in selected regions of line of sigth (LoS) magnetograms recorded by the Heliosismic Magnetic Imager on board of the Solar Dynamic Observatory (SDO/HMI). To this end we have compared the properties of the photospheric magnetic field underlying 60 CHs and 60 non-coronal holes (NCHs). In particular, in addition to having studied distributions and momenta of photospheric magnetic fields associated to the selected regions, we have performed the sign singularity analysis computing the cancellation functions of the highly fluctuating photospheric magnetic fields. We have found that photospheric magnetic fields associated to CHs are imbalanced in the sign and that this imbalance emerges mainly at the supergranular scales.

Cantoresi, M., Berrilli, F., Lepreti, F. (2023). Organization scale of photospheric magnetic imbalance in coronal holes. RENDICONTI LINCEI. SCIENZE FISICHE E NATURALI, 34(4), 1045-1053 [10.1007/s12210-023-01185-x].

Organization scale of photospheric magnetic imbalance in coronal holes

Matteo Cantoresi;Francesco Berrilli
;
2023-01-01

Abstract

To investigate the statistical properties of the photospheric magnetic fields underlying coronal holes (CHs) and “normal” coronal regions a classical technique, the signed measure, is used. This technique allows to characterize the scaling behavior and the topology of sign-oscillating magnetic structures in selected regions of line of sigth (LoS) magnetograms recorded by the Heliosismic Magnetic Imager on board of the Solar Dynamic Observatory (SDO/HMI). To this end we have compared the properties of the photospheric magnetic field underlying 60 CHs and 60 non-coronal holes (NCHs). In particular, in addition to having studied distributions and momenta of photospheric magnetic fields associated to the selected regions, we have performed the sign singularity analysis computing the cancellation functions of the highly fluctuating photospheric magnetic fields. We have found that photospheric magnetic fields associated to CHs are imbalanced in the sign and that this imbalance emerges mainly at the supergranular scales.
2023
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/06 - Fisica per il Sistema Terra e Il Mezzo Circumterrestre
Settore PHYS-05/B - Fisica del sistema Terra, dei pianeti, dello spazio e del clima
English
Con Impact Factor ISI
Sun: coronal holes (CHs)
Sun: magnetic fields
Sun: photosphere
Techniques: image processing
https://link.springer.com/article/10.1007/s11207-024-02342-7
Cantoresi, M., Berrilli, F., Lepreti, F. (2023). Organization scale of photospheric magnetic imbalance in coronal holes. RENDICONTI LINCEI. SCIENZE FISICHE E NATURALI, 34(4), 1045-1053 [10.1007/s12210-023-01185-x].
Cantoresi, M; Berrilli, F; Lepreti, F
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/393005
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