Analysis of a 12-Hour Artifact in LF Oscillations of the Magnetic Field of Sunspots According to SDO/HMI Data


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Abstract

The properties of the 12-h artifact in the data of the SDO/HMI instrument (Helioseismic and Magnetic Imager) caused by the nonzero radial velocity of the station relative to the Sun are investigated. The study has been carried out with respect to long-period oscillations of the magnetic field of sunspots for different station positions in the Earth’s orbit by the alternative spectral method of singular decomposition of the signal CaterPillarSSA. Features of artifact filtering, both in special positions of the station (at the points of aphelion and perihelion) and at arbitrarily selected orbital points, are considered. It is shown that the 12-h artifact mode can be completely filtered from the time series of the observed variable, not only at these two orbital points (because of the symmetry of the station’s radial velocity with respect to the zero mean here) but also at any others. It is shown that only a 12-h mode is physically justified, while the 24-h harmonic appears only as an artifact in the Fourier decomposition of the amplitude-modulated signal. It is emphasized that the values of the magnetic field measured with SDO/HMI are sensitive only to the station’s radial velocity absolute values with respect to the Sun and do not depend on its direction. It has been noted that the periods of sunspot oscillation as a whole obtained from SDO/HMI data after orbital artifact filtration fit well into the dependence diagram of the period of sunspot oscillations on the value of its magnetic field strength constructed earlier by SOHO/MDIdata.

About the authors

V. I. Efremov

Central Astronomical Observatory at Pulkovo of the Russian Academy of Sciences

Email: solov@gao.spb.ru
Russian Federation, St. Petersburg

L. D. Parfinenko

Central Astronomical Observatory at Pulkovo of the Russian Academy of Sciences

Email: solov@gao.spb.ru
Russian Federation, St. Petersburg

A. A. Solov’ev

Central Astronomical Observatory at Pulkovo of the Russian Academy of Sciences; Kalmyk State University

Author for correspondence.
Email: solov@gao.spb.ru
Russian Federation, St. Petersburg; Elista

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