activity
20172021
most citedDense ee plasma formation in magnetic dipole wave: vacuum breakdown by 10-PW class lasers

3 citations · 6 across the 4 of their papers we have counts for

collaborators

12 papers

physics.plasm-ph20213 cited

Dense ee plasma formation in magnetic dipole wave: vacuum breakdown by 10-PW class lasers

A. V. Bashinov, E. S. Efimenko, A. A. Muraviev +5

When studying the interaction of matter with extreme fields using multipetawatt lasers, there are two limiting cases maximizing either the electric field or the magnetic field. Her…

physics.comp-ph2020

Optimized computation of tight focusing of short pulses using mapping to periodic space

Elena Panova, Valentin Volokitin, Evgeny Efimenko +9

When a pulsed, few-cycle electromagnetic wave is focused by optics with f-number smaller than two, the frequency components it contains are focused to different regions of space, b…

physics.comp-ph2020

Optimized routines for event generators in QED-PIC codes

V. Volokitin, S. Bastrakov, A. Bashinov +4

In recent years, the prospects of performing fundamental and applied studies at the next-generation high-intensity laser facilities have greatly stimulated the interest in performi…

physics.comp-ph2020

Strategies for particle resampling in PIC simulations

A. Muraviev, A. Bashinov, E. Efimenko +3

In particle-in-cell simulations, excessive or even unfeasible computational demands can be caused by the growth of the number of particles in the course of prolific ionization or c…

quant-ph20202 cited

Simulating quantum dynamics: Evolution of algorithms in the HPC context

I. Meyerov, A. Liniov, M. Ivanchenko +1

Due to complexity of the systems and processes it addresses, the development of computational quantum physics is influenced by the progress in computing technology. Here we overvie…

physics.comp-ph2019

Transforming the Lindblad Equation into a System of Linear Equations: Performance Optimization and Parallelization of an Algorithm

Iosif Meyerov, Evgeny Kozinov, Alexey Liniov +4

With their constantly increasing peak performance and memory capacity, modern supercomputers offer new perspectives on numerical studies of open many-body quantum systems. These sy…