Small-scale magnetic flux ropes and their properties based on in-situ measurements from Parker Solar Probe
arXiv:2111.09261 · doi:10.3847/1538-4357/ac3487
Abstract
We report small-scale magnetic flux ropes via the Parker Solar Probe in situ measurements during the first six encounters and present additional analyses to supplement our prior work in Chen et al. 2021. These flux ropes are detected by the Grad-Shafranov-based algorithm with the duration and scale size ranging from 10 seconds to 1 hour and from a few hundred kilometers to 10 au, respectively. They include both static structures and those with significant field-aligned plasma flows. Most structures tend to possess large cross helicity, while the residual energy distributes in wide ranges. We find that these dynamic flux ropes mostly propagate anti-sunward, with no preferential sign of magnetic helicity. The magnetic flux function follows a power law and is proportional to scale size. We also present case studies showing reconstructed two-dimensional (2D) configurations, which confirm that the static and dynamic flux ropes have the common configuration of spiral magnetic field lines (also streamlines). Moreover, the existence of such events hints at the interchange reconnection as a possible mechanism to generate flux rope-like structures near the Sun. Lastly, we summarize the major findings and discuss the possible correlation between these flux rope-like structures and turbulence due to the process of local Alfvenic alignment.
Accepted by ApJ on Oct 26 2021
References in corpus (6)
- Switchbacks in the near-Sun magnetic field: long memory and impact on the turbulence cascade
- The Solar Probe Cup on Parker Solar Probe
- Rapid directional alignment of velocity and magnetic field in magnetohydrodynamic turbulence
- Coronal-Jet-Producing Minifilament Eruptions as a Possible Source of Parker Solar Probe (PSP) Switchbacks
- Observational evidence for self-generation of small-scale magnetic flux ropes from intermittent solar wind turbulence
- Small-scale Magnetic Flux Ropes with Field-aligned Flows via the PSP In-situ Observations