Litcius/Paper detail

Abrupt Shrinking of Solar Corona in the Late 1990s

Ilpo Virtanen, Jennimari Koskela, К. Мурсула

2020The Astrophysical Journal Letters15 citationsDOIOpen Access PDF

Abstract

Abstract We derive the longest uniform record of rotational intensities solar coronal magnetic field since 1968 and compare it with the heliospheric magnetic field (HMF) observed at the Earth. We scale the Mount Wilson Observatory and Wilcox Solar Observatory observations of the photospheric magnetic field to the level of the Synoptic Optical Long-term Investigations of the Sun/Vector Spectro Magnetograph and apply the potential field source surface model to calculate the coronal magnetic field. We find that the evolution of the coronal magnetic field during the last 50 yr agrees with the HMF observed at the Earth only if the effective coronal size, the distance of the coronal source surface of the HMF, is allowed to change in time. We calculate the optimum source surface distance for each rotation and find that it experienced an abrupt decrease in the late 1990s. The effective volume of the solar corona shrunk to less than one half during a short period of only a few years. We note that this abrupt shrinking coincides with other changes in solar magnetic fields that are likely related to the decrease of the overall solar activity, i.e., the demise of the Grand Modern Maximum.

Topics & Concepts

Coronal holeCorona (planetary geology)PhysicsSolar observatoryMagnetic fieldAstrophysicsCoronal mass ejectionObservatoryCoronal loopAstronomySolar windAstrobiologyQuantum mechanicsVenusSolar and Space Plasma DynamicsGeomagnetism and Paleomagnetism StudiesStellar, planetary, and galactic studies