Magnetic energy is an universal source of energy in the Universe and plays a fundamental role
in astrophysical processes such as magnetic reconnection, Gamma-ray bursts and so on, as well as
in laboratory plasma experiments. Generation and compression of strong magnetic fields is a rapidly developing area
of High-Energy-Density-Physics (HEDP). Laser produced plasma, in which magnetic fields are generated
mostly due to the Biermann battery effect, can be used for studying magnetic field compression.
We present the experimental results of the collision of parallel magnetic fields. For this, we use two dense targets
that are both irradiated by ns laser beams. As the plasmas from the laser spots radially expand,
the aligned parallel magnetic fields are advected to the interaction region between the targets.
By shifting the targets along their normal, we have these laterally expanding Biermann fields can collide.
To resolve in time the topology of the compressed magnetic field we use the proton deflectometry technique,
which clearly highlights the magnetic field compression. These results will be presented,
as well as the results of full-scale 3D hybrid numerical simulations.
06月05日
2023
06月09日
2023
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2025年05月12日 中国 西安市
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第七届极端条件下的物质与辐射国际会议2020年05月25日 中国 Xi'an
第五届极端条件下的物质与辐射国际会议2019年05月29日 中国 Hefei
第四届极端物质与辐射国际会议2017年06月01日 中国 Beijing,China
第二届极端物质与辐射国际会议