Abstract
Collimated outflows (jets) are ubiquitous in the universe, appearing around sources as diverse as protostars and extragalactic supermassive black holes. Jets are thought to be magnetically collimated, and launched from a magnetized accretion disk surrounding a compact gravitating object. We have developed the first laboratory experiments to address time-dependent, episodic phenomena relevant to the poorly understood jet acceleration and collimation region. The experimental results show the periodic ejections of magnetic bubbles naturally evolving into a heterogeneous jet propagating inside a channel made of self-collimated magnetic cavities. The results provide a unique view of the possible transition from a relatively steady-state jet launching to the observed highly structured outflows. © 2009. The American Astronomical Society. All rights reserved..
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Ciardi, A., Lebedev, S. V., Frank, A., Suzuki-Vidal, F., Hall, G. N., Bland, S. N., … Camenzind, M. (2009). Episodic magnetic bubbles and jets: Astrophysical implications from laboratory experiments. Astrophysical Journal, 691(2). https://doi.org/10.1088/0004-637X/691/2/L147
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