activity
20172022
most citedInsensitivity of a turbulent laser-plasma dynamo to initial conditions

11 citations · 11 across the 2 of their papers we have counts for

collaborators

6 papers

physics.plasm-ph2022

Experimental Evidence of Plasmoids in High- Magnetic Reconnection

J. A. Pearcy, M. J. Rosenberg, T. M. Johnson +6

Magnetic reconnection is a ubiquitous and fundamental process in plasmas by which magnetic fields change their topology and release magnetic energy. Despite decades of research, th…

physics.plasm-ph2022★ 11 cited

Insensitivity of a turbulent laser-plasma dynamo to initial conditions

A. F. A. Bott, L. Chen, P. Tzeferacos +18

It has recently been demonstrated experimentally that a turbulent plasma created by the collision of two inhomogeneous, asymmetric, weakly magnetised laser-produced plasma jets can…

physics.plasm-ph2018

Transport of high-energy charged particles through spatially-intermittent turbulent magnetic fields

L. E. Chen, A. F. A. Bott, P. Tzeferacos +22

Identifying the sources of the highest energy cosmic rays requires understanding how they are deflected by the stochastic, spatially intermittent intergalactic magnetic field. Here…

physics.plasm-ph2018

Numerical Simulation of magnetized jet creation using a hollow ring of laser beams

Y. Lu, P. Tzeferacos, E. Liang +11

Three dimensional FLASH magneto-hydrodynamics(MHD) modeling is carried out to interpret the OMEGA laser experiments of strongly magnetized, highly collimated jets driven by a ring…

physics.plasm-ph2017

Laboratory evidence of dynamo amplification of magnetic fields in a turbulent plasma

P. Tzeferacos, A. Rigby, A. Bott +27

Magnetic fields are ubiquitous in the Universe. Extragalactic disks, halos and clusters have consistently been shown, via diffuse radio-synchrotron emission and Faraday rotation me…

physics.plasm-ph2017

Numerical modeling of laser-driven experiments aiming to demonstrate magnetic field amplification via turbulent dynamo

P. Tzeferacos, A. Rigby, A. Bott +29

The universe is permeated by magnetic fields, with strengths ranging from a femtogauss in the voids between the filaments of galaxy clusters to several teragauss in black holes and…