We determine the ionization time in tunneling ionization by an elliptically polarized light pulse relative to its maximum. This is achieved by a full quantum propagation of the electron wave function forward in time, followed by a classical backpropagation to identify tunneling parameters, in particular, the fraction of electrons that has tunneled out. We find that the ionization time is close to zero for single active electrons in helium and in hydrogen if the fraction of tunneled electrons is large. We expect our analysis to be essential to quantify ionization times for correlated electron motion
Tunnel ionization belongs to the fundamental processes of atomic physics. It is still an open questi...
We perform a time-delay analysis of the strong field ionization of atomic hydrogen in the tunneling ...
Several recent attoclock experiments have investigated the fundamentalquestion of a quantum mechanic...
We determine the ionization time in tunneling ionization by an elliptically polarized light pulse re...
We investigate tunneling ionization of a single active electron with a strong and short laser pulse,...
We investigate tunneling ionization of a single active electron with a strong and short laser pulse,...
A quantum approach is presented to investigate tunneling time by supervising the instantaneous ioniz...
A quantum approach is presented to investigate tunneling time by supervising the instantaneous ioniz...
Tunnel ionization belongs to the fundamental processes of atomic physics. It is still an open questi...
We investigate tunneling ionization of a model helium atom in a strong circularly polarized short la...
© 2021 American Physical SocietyWe present a method to estimate the backward rescattering time of a ...
The first hundred attoseconds of the electron dynamics during strong field tunneling ionization are ...
The first hundred attoseconds of the electron dynamics during strong field tunneling ionization are ...
Tunnel ionization belongs to the fundamental processes of atomic physics. The so-called two-step mod...
We propose a method for studying the tunneling process by analyzing the instantaneous ionization rat...
Tunnel ionization belongs to the fundamental processes of atomic physics. It is still an open questi...
We perform a time-delay analysis of the strong field ionization of atomic hydrogen in the tunneling ...
Several recent attoclock experiments have investigated the fundamentalquestion of a quantum mechanic...
We determine the ionization time in tunneling ionization by an elliptically polarized light pulse re...
We investigate tunneling ionization of a single active electron with a strong and short laser pulse,...
We investigate tunneling ionization of a single active electron with a strong and short laser pulse,...
A quantum approach is presented to investigate tunneling time by supervising the instantaneous ioniz...
A quantum approach is presented to investigate tunneling time by supervising the instantaneous ioniz...
Tunnel ionization belongs to the fundamental processes of atomic physics. It is still an open questi...
We investigate tunneling ionization of a model helium atom in a strong circularly polarized short la...
© 2021 American Physical SocietyWe present a method to estimate the backward rescattering time of a ...
The first hundred attoseconds of the electron dynamics during strong field tunneling ionization are ...
The first hundred attoseconds of the electron dynamics during strong field tunneling ionization are ...
Tunnel ionization belongs to the fundamental processes of atomic physics. The so-called two-step mod...
We propose a method for studying the tunneling process by analyzing the instantaneous ionization rat...
Tunnel ionization belongs to the fundamental processes of atomic physics. It is still an open questi...
We perform a time-delay analysis of the strong field ionization of atomic hydrogen in the tunneling ...
Several recent attoclock experiments have investigated the fundamentalquestion of a quantum mechanic...