TY - JOUR
T1 - Magnetic and Velocity Fluctuations in the Near-Sun Region from 0.1-0.3 au Observed by Parker Solar Probe
AU - Wu, Honghong
AU - Tu, Chuanyi
AU - Wang, Xin
AU - Yang, Liping
N1 - Publisher Copyright:
© 2021. The Author(s). Published by the American Astronomical Society..
PY - 2021/12/1
Y1 - 2021/12/1
N2 - The fluctuations observed in the slow solar wind at 1 au by the WIND spacecraft are shown by recent studies to consist of mainly magnetic-field directional turning and magnetic-velocity alignment structure (MVAS). How these structures are created has been a question because the nature of the fluctuations in the near-Sun region remains unknown. Here, we present an analysis of the measurements in the slow solar wind from 0.1-0.3 au by Parker Solar Probe during its first six orbits. We present the distributions in the C vb ′ - σ r plane of both the occurrence and average amplitudes of the fluctuations, including the magnetic field, the velocity, and the Els sser variables, where C vb ′ is the correlation coefficient between the magnetic and velocity fluctuations multiplied by the opposite sign of the radial component of the mean magnetic field and σ r is the normalized residual energy. We find that the dominant composition is the outward-propagating Alfvénic fluctuations. We find Alfvénic fluctuations with C vb ′ > 0.95, in which the amplitudes of z + reach 60 km s-1 and those of z - are close to the observational uncertainty. We also find a region with high C vb ′ and moderate minus σ r in which the fluctuations are considered MVAS being magnetic dominated with the amplitude of magnetic fluctuations reaching 60 km s-1. We provide empirical relations between the velocity fluctuation amplitude and C vb ′. The comparison between these results and those observed at 1 au may provide some clues as to the nature and evolution of the fluctuations.
AB - The fluctuations observed in the slow solar wind at 1 au by the WIND spacecraft are shown by recent studies to consist of mainly magnetic-field directional turning and magnetic-velocity alignment structure (MVAS). How these structures are created has been a question because the nature of the fluctuations in the near-Sun region remains unknown. Here, we present an analysis of the measurements in the slow solar wind from 0.1-0.3 au by Parker Solar Probe during its first six orbits. We present the distributions in the C vb ′ - σ r plane of both the occurrence and average amplitudes of the fluctuations, including the magnetic field, the velocity, and the Els sser variables, where C vb ′ is the correlation coefficient between the magnetic and velocity fluctuations multiplied by the opposite sign of the radial component of the mean magnetic field and σ r is the normalized residual energy. We find that the dominant composition is the outward-propagating Alfvénic fluctuations. We find Alfvénic fluctuations with C vb ′ > 0.95, in which the amplitudes of z + reach 60 km s-1 and those of z - are close to the observational uncertainty. We also find a region with high C vb ′ and moderate minus σ r in which the fluctuations are considered MVAS being magnetic dominated with the amplitude of magnetic fluctuations reaching 60 km s-1. We provide empirical relations between the velocity fluctuation amplitude and C vb ′. The comparison between these results and those observed at 1 au may provide some clues as to the nature and evolution of the fluctuations.
UR - https://www.scopus.com/pages/publications/85121788700
U2 - 10.3847/1538-4357/ac3331
DO - 10.3847/1538-4357/ac3331
M3 - 文章
AN - SCOPUS:85121788700
SN - 0004-637X
VL - 922
JO - Astrophysical Journal
JF - Astrophysical Journal
IS - 2
M1 - 92
ER -