activity
20202022
most citedA theoretical framework of chorus wave excitation

37 citations · 71 across the 3 of their papers we have counts for

collaborators

5 papers

cond-mat.str-el2022★ 23 cited

Electrons with Planckian scattering obey standard orbital motion in a magnetic field

A. Ataei, A. Gourgout, G. Grissonnanche +14

In various "strange" metals, electrons undergo Planckian dissipation, a strong and anomalous scattering that grows linearly with temperature, in contrast to the quadratic temperatu…

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-ph2021★ 37 cited

A theoretical framework of chorus wave excitation

F. Zonca, X. Tao, L. Chen

We propose a self-consistent theoretical framework of chorus wave excitation, which describes the evolution of the whistler fluctuation spectrum as well as the supra-thermal electr…

physics.plasm-ph2020

Inefficient magnetic-field amplification in supersonic laser-plasma turbulence

A. F. A. Bott, L. Chen, G. Boutoux +17

We report a laser-plasma experiment that was carried out at the LMJ-PETAL facility and realized the first magnetized, turbulent, supersonic plasma with a large magnetic Reynolds nu…

physics.plasm-ph2020

Time-resolved fast turbulent dynamo in a laser plasma

A. F. A. Bott, P. Tzeferacos, L. Chen +25

Understanding magnetic-field generation and amplification in turbulent plasma is essential to account for observations of magnetic fields in the universe. A theoretical framework a…