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20162019
most citedDifferent responses of the Rayleigh-Taylor type and resistive drift wave instabilities to the velocity shear

11 citations · 18 across the 3 of their papers we have counts for

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Showing physics.plasm-phShow all

7 papers · 1 filter

physics.plasm-ph2023

On the force exerted on a non-spherical dust grain from homogeneous, stationary, non-magnetized plasma

S. I. Krasheninnikov, R. D. Smirnov

It is shown that stationary non-spherical dust grain immersed into stationary non-magnetized plasma can experience a force caused by the grain-plasma interactions.

physics.plasm-ph201911 cited

Different responses of the Rayleigh-Taylor type and resistive drift wave instabilities to the velocity shear

Yanzeng Zhang, S. I. Krasheninnikov, A. I. Smolyakov

The effects of velocity shear on the unstable modes driven by the effective gravity (Rayleigh-Taylor and interchange) and resistive drift wave instabilities for inhomogeneous equil…

physics.plasm-ph2019

Electron dynamics in counter-propagating laser waves

Yanzeng Zhang, Sergei Krasheninnikov

The electron dynamics in counter-propagating laser waves is investigated by employing a novel approach, where the new Hamiltonian is time-independent when the perturbative laser wa…

physics.plasm-ph20197 cited

A new approach to stochastic acceleration of electrons in colliding laser fields

Yanzeng Zhang, Sergei Krasheninnikov

The mechanism of stochastic electron acceleration in colliding laser waves is investigated by employing proper canonical variables and effective time, such that the new Hamiltonian…

physics.plasm-ph2018

Radiation friction force effects on electron dynamics in ultra-intensity laser pulse

Yanzeng Zhang, Sergei Krasheninnikov

The electron dynamics in the ultra-high intensity laser pulse with radiation friction force in theLandau-Lifshitz form are studied. It is demonstrated that widely used approximatio…

physics.plasm-ph2018

High-angle Deflection of the Energetic Electrons by a Voluminous Magnetic Structure in Near-normal Intense Laser-plasma Interactions

J. Peebles, A. V. Arefiev, S. Zhang +14

The physics governing electron acceleration by a relativistically intense laser are not confined to the critical density surface, they also pervade the sub-critical plasma in front…