Ion and Electron Acoustic Bursts during Anti-Parallel Magnetic Reconnection Driven by Lasers
arXiv:2209.12754 · doi:10.1038/s41567-023-01972-1
Abstract
Magnetic reconnection converts magnetic energy into thermal and kinetic energy in plasma. Among numerous candidate mechanisms, ion acoustic instabilities driven by the relative drift between ions and electrons, or equivalently electric current, have been suggested to play a critical role in dissipating magnetic energy in collisionless plasmas. However, their existence and effectiveness during reconnection have not been well understood due to ion Landau damping and difficulties in resolving the Debye length scale in the laboratory. Here we report a sudden onset of ion acoustic bursts measured by collective Thomson scattering in the exhaust of anti-parallel magnetically driven reconnection using high-power lasers. The ion acoustic bursts are followed by electron acoustic bursts with electron heating and bulk acceleration. We reproduce these observations with 1D and 2D particle-in-cell simulations in which electron outflow jet drives ion-acoustic instabilities, forming double layers. These layers induce electron two-stream instabilities that generate electron acoustic bursts and energize electrons. Our results demonstrate the importance of ion and electron acoustic dynamics during reconnection when ion Landau damping is ineffective, a condition applicable to a range of astrophysical plasmas including near-Earth space, stellar flares, and black hole accretion engines.
References in corpus (7)
- Magnetic reconnection in the era of exascale computing and multiscale experiments
- Ultrafast proton radiography of the magnetic fields generated by a laser-driven coil current
- Anomalous Heating and Plasmoid Formation in a Driven Magnetic Reconnection Experiment
- Direct measurement of non-thermal electron acceleration from magnetically driven reconnection in a laboratory plasma
- Core Electron Heating By Triggered Ion Acoustic Waves In The Solar Wind
- Core Electron Heating By Triggered And Ordinary Ion Acoustic Waves In The Solar Wind
- Collective Thomson scattering in non-equilibrium laser produced two-stream plasmas
Cited by in corpus (9)
- Direct measurement of non-thermal electron acceleration from magnetically driven reconnection in a laboratory plasma
- Relativistic Magnetic Reconnection in Astrophysical Plasmas: A Powerful Mechanism of Nonthermal Emission
- A Two-dimensional Numerical Study of Ion-Acoustic Turbulence
- Record Magnetic Field Generation by Short-Pulse Laser-Driven Capacitor-Coil Targets
- Diagnosing electric and magnetic fields in laser-driven coil targets
- Competition of magnetic reconnections in self-generated and external magnetic fields
- Time-Resolved Interferometric Measurements of Plasma Density Evolution in Laser-Driven Capacitor-Coil Targets
- Role of ion acoustic instability in magnetic reconnection
- Characterizing the temporal evolution of Biermann-battery-driven magnetic reconnection in laser-ablated plasmas