activity
20172020
collaborators

5 papers

cond-mat.stat-mech2020

Energy partition for anharmonic, undamped, classical oscillators

Michal Mandrysz, Bartlomiej Dybiec

Using stochastic methods, general formulas for average kinetic and potential energies for anharmonic, undamped (frictionless), classical oscillators are derived. It is demonstrated…

cond-mat.stat-mech2020

Bounding energy growth in friction-less stochastic oscillators

Michał Mandrysz, Bartłomiej Dybiec

The paper presents analytical and numerical results on energetics of non-harmonic, undamped, single-well, stochastic oscillators driven by additive Gaussian white noises. Absence o…

cond-mat.stat-mech2019

Deterministic and randomized motions in single-well potentials

Michal Mandrysz, Bartlomiej Dybiec

Newtonian, undamped motion in single-well potentials belong to a class of well-studied conservative systems. Here, we investigate and compare long-time properties of fully determin…

physics.atom-ph2019

Rescattering effects in streaking experiments of strong-field ionization

Michał Mandrysz, Matthias Kübel, Jakub Zakrzewski +1

Strong field ionization provides a unique mean to address complex dynamics of an electron in competing Coulomb and laser fields. Recent streak camera experiment (Kübel, et al., Phy…

physics.pop-ph2017

The Top-Down Complexity

Michal Mandrysz, Jakub Mielczarek

The rising complexity of our terrestrial surrounding is an empirical fact. Details of this process evaded description in terms of physics for long time attracting attention and cre…