activity
20102022
most citedEnergy transfer and dissipation in forced isotropic turbulence

52 citations · 93 across the 6 of their papers we have counts for

collaborators

6 papers

physics.plasm-ph20225 cited

Laser pulse compression by a density gradient plasma for exawatt to zettawatt lasers

Min Sup Hur, Bernhard Ersfeld, Hyojeong Lee +7

We propose a new method for laser pulse compression that uses the spatially varying dispersion of a plasma plume with a density gradient. This novel scheme can be used to compress…

physics.plasm-ph2014

Semi-classical beam cooling in an intense laser pulse

Samuel R. Yoffe, Yevgen Kravets, Adam Noble +1

We present a novel technique for studying the evolution of a particle distribution using single particle dynamics such that the distribution can be accurately reconstructed using f…

physics.flu-dyn201410 cited

Self-organization and transition to turbulence in isotropic fluid motion driven by negative damping at low wavenumbers

W. D. McComb, M. F. Linkmann, A. Berera +2

We observe a symmetry-breaking transition from a turbulent to a self-organized state in direct numerical simulation of the Navier-Stokes equation at very low Reynolds number. In th…

physics.flu-dyn201426 cited

Spectral analysis of structure functions and their scaling exponents in forced isotropic turbulence

W. D. McComb, S. R. Yoffe, M. F. Linkmann +1

The pseudospectral method, in conjunction with a new technique for obtaining scaling exponents from the structure functions , is presented as an alternative to the ex…

physics.flu-dyn201452 cited

Energy transfer and dissipation in forced isotropic turbulence

W. D. McComb, A. Berera, S. R. Yoffe +1

A model for the Reynolds number dependence of the dimensionless dissipation rate was derived from the dimensionless Kármán-Howarth equation, resulting in $C_{\var…

physics.flu-dyn2010

An exact expression for the Reynolds number dependence of the energy dissipation rate in homogeneous, isotropic turbulence

W. David McComb, Arjun Berera, Matthew Salewski +1

The Reynolds number dependence of the dimensionless dissipation rate is derived directly from the Karman-Howarth equation in terms of the inverse of the integral scale Reynolds num…