Literature DB >> 24785042

Experimental demonstration of an inertial collimation mechanism in nested outflows.

R Yurchak1, A Ravasio1, A Pelka1, S Pikuz2, E Falize3, T Vinci1, M Koenig1, B Loupias3, A Benuzzi-Mounaix1, M Fatenejad4, P Tzeferacos4, D Q Lamb4, E G Blackman5.   

Abstract

Interaction between a central outflow and a surrounding wind is common in astrophysical sources powered by accretion. Understanding how the interaction might help to collimate the inner central outflow is of interest for assessing astrophysical jet formation paradigms. In this context, we studied the interaction between two nested supersonic plasma flows generated by focusing a long-pulse high-energy laser beam onto a solid target. A nested geometry was created by shaping the energy distribution at the focal spot with a dedicated phase plate. Optical and x-ray diagnostics were used to study the interacting flows. Experimental results and numerical hydrodynamic simulations indeed show the formation of strongly collimated jets. Our work experimentally confirms the "shock-focused inertial confinement" mechanism proposed in previous theoretical astrophysics investigations.

Year:  2014        PMID: 24785042     DOI: 10.1103/PhysRevLett.112.155001

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

1.  Strong suppression of heat conduction in a laboratory replica of galaxy-cluster turbulent plasmas.

Authors:  Jena Meinecke; Petros Tzeferacos; James S Ross; Archie F A Bott; Scott Feister; Hye-Sook Park; Anthony R Bell; Roger Blandford; Richard L Berger; Robert Bingham; Alexis Casner; Laura E Chen; John Foster; Dustin H Froula; Clement Goyon; Daniel Kalantar; Michel Koenig; Brandon Lahmann; Chikang Li; Yingchao Lu; Charlotte A J Palmer; Richard D Petrasso; Hannah Poole; Bruce Remington; Brian Reville; Adam Reyes; Alexandra Rigby; Dongsu Ryu; George Swadling; Alex Zylstra; Francesco Miniati; Subir Sarkar; Alexander A Schekochihin; Donald Q Lamb; Gianluca Gregori
Journal:  Sci Adv       Date:  2022-03-09       Impact factor: 14.136

  1 in total

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