Observations of pressure anisotropy effects within semi-collisional magnetized plasma bubbles
Magnetic fields can be reorganized by plasma flows and lead to effects such as magnetic reconnection. Here the authors explore the evolution of magnetized-plasma bubbles in a semi-collisional regime and the role of pressure anisotropy in influencing the flow of the laser-produced plasma.
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2021
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oai:doaj.org-article:951e95e6d410452ab3f242fa92f2c94d2021-12-02T15:22:48ZObservations of pressure anisotropy effects within semi-collisional magnetized plasma bubbles10.1038/s41467-020-20387-72041-1723https://doaj.org/article/951e95e6d410452ab3f242fa92f2c94d2021-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20387-7https://doaj.org/toc/2041-1723Magnetic fields can be reorganized by plasma flows and lead to effects such as magnetic reconnection. Here the authors explore the evolution of magnetized-plasma bubbles in a semi-collisional regime and the role of pressure anisotropy in influencing the flow of the laser-produced plasma.E. R. TubmanA. S. JoglekarA. F. A. BottM. BorghesiB. ColemanG. CooperC. N. DansonP. DureyJ. M. FosterP. GrahamG. GregoriE. T. GumbrellM. P. HillT. HodgeS. KarR. J. KinghamM. ReadC. P. RidgersJ. SkidmoreC. SpindloeA. G. R. ThomasP. TreadwellS. WilsonL. WillingaleN. C. WoolseyNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-9 (2021) |
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Science Q E. R. Tubman A. S. Joglekar A. F. A. Bott M. Borghesi B. Coleman G. Cooper C. N. Danson P. Durey J. M. Foster P. Graham G. Gregori E. T. Gumbrell M. P. Hill T. Hodge S. Kar R. J. Kingham M. Read C. P. Ridgers J. Skidmore C. Spindloe A. G. R. Thomas P. Treadwell S. Wilson L. Willingale N. C. Woolsey Observations of pressure anisotropy effects within semi-collisional magnetized plasma bubbles |
description |
Magnetic fields can be reorganized by plasma flows and lead to effects such as magnetic reconnection. Here the authors explore the evolution of magnetized-plasma bubbles in a semi-collisional regime and the role of pressure anisotropy in influencing the flow of the laser-produced plasma. |
format |
article |
author |
E. R. Tubman A. S. Joglekar A. F. A. Bott M. Borghesi B. Coleman G. Cooper C. N. Danson P. Durey J. M. Foster P. Graham G. Gregori E. T. Gumbrell M. P. Hill T. Hodge S. Kar R. J. Kingham M. Read C. P. Ridgers J. Skidmore C. Spindloe A. G. R. Thomas P. Treadwell S. Wilson L. Willingale N. C. Woolsey |
author_facet |
E. R. Tubman A. S. Joglekar A. F. A. Bott M. Borghesi B. Coleman G. Cooper C. N. Danson P. Durey J. M. Foster P. Graham G. Gregori E. T. Gumbrell M. P. Hill T. Hodge S. Kar R. J. Kingham M. Read C. P. Ridgers J. Skidmore C. Spindloe A. G. R. Thomas P. Treadwell S. Wilson L. Willingale N. C. Woolsey |
author_sort |
E. R. Tubman |
title |
Observations of pressure anisotropy effects within semi-collisional magnetized plasma bubbles |
title_short |
Observations of pressure anisotropy effects within semi-collisional magnetized plasma bubbles |
title_full |
Observations of pressure anisotropy effects within semi-collisional magnetized plasma bubbles |
title_fullStr |
Observations of pressure anisotropy effects within semi-collisional magnetized plasma bubbles |
title_full_unstemmed |
Observations of pressure anisotropy effects within semi-collisional magnetized plasma bubbles |
title_sort |
observations of pressure anisotropy effects within semi-collisional magnetized plasma bubbles |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/951e95e6d410452ab3f242fa92f2c94d |
work_keys_str_mv |
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