The common tunneling picture of electron-positron pair creation in a strong electric field is generalized to pair creation in combined crossed electric and magnetic fields. This enhanced picture, being symmetric for electrons and positrons, is formulated in a gauge-invariant and Lorentz-invariant manner for quasistatic fields. It may be used to infer qualitative features of the pair creation process. In particular, it allows for an intuitive interpretation of how the presence of a magnetic field modifies and, in particular cases, even enhances pair creation. The creation of electrons and positrons from the vacuum may be assisted by an energetic photon, which can also be incorporated into this picture of pair creation
AbstractUltra strong electromagnetic fields can lead to spontaneous creation of single or multiple e...
Pair production of electron-positron pairs in ultra-intense laser fields is considered in this work....
We examine the creation of electron-positron pairs in a very strong force field. Using numerical sol...
We study the creation of electron-positron pairs from the vacuum induced by two spatially displaced ...
We study the creation of electron-positron pairs from the vacuum induced by a combination of a stati...
We study the creation of electron-positron pairs induced by two spatially separated electric fields ...
The simultaneous creation of multiple electron-positron pairs by localized strong electric fields is...
The process of pair creation by a photon in a strong magnetic field is investigated basing on the po...
By solving the quantum field theoretical version of the Klein-Gordon equation numerically, we study ...
International audienceQED effects are known to occur in a strong laser pulse interaction with a coun...
International audienceQED effects are known to occur in a strong laser pulse interaction with a coun...
International audienceQED effects are known to occur in a strong laser pulse interaction with a coun...
International audienceQED effects are known to occur in a strong laser pulse interaction with a coun...
We study nonperturbative multiphoton electron-positron pair creation in ultrastrong electromagnetic ...
Ultra strong electromagnetic fields can lead to spontaneous creation of single or multiple electron–...
AbstractUltra strong electromagnetic fields can lead to spontaneous creation of single or multiple e...
Pair production of electron-positron pairs in ultra-intense laser fields is considered in this work....
We examine the creation of electron-positron pairs in a very strong force field. Using numerical sol...
We study the creation of electron-positron pairs from the vacuum induced by two spatially displaced ...
We study the creation of electron-positron pairs from the vacuum induced by a combination of a stati...
We study the creation of electron-positron pairs induced by two spatially separated electric fields ...
The simultaneous creation of multiple electron-positron pairs by localized strong electric fields is...
The process of pair creation by a photon in a strong magnetic field is investigated basing on the po...
By solving the quantum field theoretical version of the Klein-Gordon equation numerically, we study ...
International audienceQED effects are known to occur in a strong laser pulse interaction with a coun...
International audienceQED effects are known to occur in a strong laser pulse interaction with a coun...
International audienceQED effects are known to occur in a strong laser pulse interaction with a coun...
International audienceQED effects are known to occur in a strong laser pulse interaction with a coun...
We study nonperturbative multiphoton electron-positron pair creation in ultrastrong electromagnetic ...
Ultra strong electromagnetic fields can lead to spontaneous creation of single or multiple electron–...
AbstractUltra strong electromagnetic fields can lead to spontaneous creation of single or multiple e...
Pair production of electron-positron pairs in ultra-intense laser fields is considered in this work....
We examine the creation of electron-positron pairs in a very strong force field. Using numerical sol...