| Literature DB >> 25205135 |
Masaaki Yamada1, Jongsoo Yoo1, Jonathan Jara-Almonte1, Hantao Ji1, Russell M Kulsrud1, Clayton E Myers1.
Abstract
Magnetic reconnection, in which magnetic field lines break and reconnect to change their topology, occurs throughout the universe. The essential feature of reconnection is that it energizes plasma particles by converting magnetic energy. Despite the long history of reconnection research, how this energy conversion occurs remains a major unresolved problem in plasma physics. Here we report that the energy conversion in a laboratory reconnection layer occurs in a much larger region than previously considered. The mechanisms for energizing plasma particles in the reconnection layer are identified, and a quantitative inventory of the converted energy is presented for the first time in a well-defined reconnection layer; 50% of the magnetic energy is converted to particle energy, 2/3 of which transferred to ions and 1/3 to electrons. Our results are compared with simulations and space measurements, for a key step towards resolving one of the most important problems in plasma physics.Year: 2014 PMID: 25205135 DOI: 10.1038/ncomms5774
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919