AbstractRecent studies of Schwinger pair production have demonstrated that the asymptotic particle spectrum is extremely sensitive to the applied field profile. We extend the idea of the dynamically assisted Schwinger effect from single pulse profiles to more realistic field configurations to be generated in an all-optical experiment searching for pair creation. We use the quantum kinetic approach to study the particle production and employ a multi-start method, combined with optimal control theory, to determine a set of parameters for which the particle yield in the forward direction in momentum space is maximized. We argue that this strategy can be used to enhance the signal of pair production on a given detector in an experimental setup
During the last decades, important improvements have been made in the laser intensities domain. In t...
We study electron-positron pair production by the combination of a strong, constant electric field a...
We evaluate particle production in highly asymmetric head-on collisions of lasers pulses due to non-...
Recent studies of Schwinger pair production have demonstrated that the asymptotic particle spectrum ...
AbstractRecent studies of Schwinger pair production have demonstrated that the asymptotic particle s...
The production of electron–positron pairs in time-dependent electric fields (Schwinger mechanism) de...
Electron-positron pair production by the superposition of two laser pulses with different ...
In the quantum kinetic framework, we investigate the momentum spectrum and the number density of cre...
The dynamical Schwinger effect refers to the creation of electron-positron pairs by a time dependent...
We study the Schwinger effect which is the non-perturbative production of e− e+ pairs from the vacuu...
We study the possibility of observing Schwinger pair production enhanced by a thermal bath of photon...
A quantum kinetic equation has been derived for the description of pair production in a time-depende...
We consider the process of electron-positron pair production in the presence of strong electric back...
We investigate the effects of laser pulse shape on strong-field quantum electrodynamics ( QED) proce...
The non-perturbative electron-positron pair production in time-dependent electric fields is investig...
During the last decades, important improvements have been made in the laser intensities domain. In t...
We study electron-positron pair production by the combination of a strong, constant electric field a...
We evaluate particle production in highly asymmetric head-on collisions of lasers pulses due to non-...
Recent studies of Schwinger pair production have demonstrated that the asymptotic particle spectrum ...
AbstractRecent studies of Schwinger pair production have demonstrated that the asymptotic particle s...
The production of electron–positron pairs in time-dependent electric fields (Schwinger mechanism) de...
Electron-positron pair production by the superposition of two laser pulses with different ...
In the quantum kinetic framework, we investigate the momentum spectrum and the number density of cre...
The dynamical Schwinger effect refers to the creation of electron-positron pairs by a time dependent...
We study the Schwinger effect which is the non-perturbative production of e− e+ pairs from the vacuu...
We study the possibility of observing Schwinger pair production enhanced by a thermal bath of photon...
A quantum kinetic equation has been derived for the description of pair production in a time-depende...
We consider the process of electron-positron pair production in the presence of strong electric back...
We investigate the effects of laser pulse shape on strong-field quantum electrodynamics ( QED) proce...
The non-perturbative electron-positron pair production in time-dependent electric fields is investig...
During the last decades, important improvements have been made in the laser intensities domain. In t...
We study electron-positron pair production by the combination of a strong, constant electric field a...
We evaluate particle production in highly asymmetric head-on collisions of lasers pulses due to non-...