We solve numerically the time-dependent Dirac equation for a quantum wave packet tunneling through a potential barrier. We analyze the spatial probability distribution of the transmitted wave packet in the context of the possibility of effectively superluminal peak and front velocities of the electron during tunneling. Both the Dirac and Schrodinger theories predict superluminal tunneling speeds. However, in contrast to the Dirac theory the Schrodinger equation allows a possible violation of causality. Based on an analysis of the tunneling process in full temporal and spatial resolution, we introduce an instantaneous tunneling speed that can be computed inside the potential barrier
We study the nature of tunneling phase time for various quantum mechanical structures such as networ...
A traversal time that has no problem of supertuminality was advanced for particles to runnel through...
We report a study of the effect of relativity on the tunneling time for the process of the tunneling...
In the context of superluminal propagation of wave packets through potential barriers, the tunneling...
Wavepacket tunneling, in the relativistic limit, is studied via solutions to the Dirac equation for ...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Based on the Dirac equation, the behavi...
It is shown that the results of Buttiker and Landauer on the traversal time of quantum tunneling thr...
The quantum mechanical tunneling effect was theoretically described in the first half of the last ce...
We obtain the solutions for the tunneling zone of a one-dimensional electrostatic potential in the r...
The tunneling time problem earlier studied in Phys. Rev. Lett 108 170402 (2012) using a non-relativi...
We analyse in detail the reshaping mechanism leading to apparently 'superluminal' advancement of a w...
We study the tunneling zone solutions of a one-dimensional electrostatic potential for the relativis...
A new variant of the packet analysis to solve the tunneling time problem for the so-called completed...
A curious feature of quantum tunneling known as the MacColl-Hartman effect is the numerical observat...
We study the nature of tunneling phase time for various quantum mechanical structures such as networ...
We study the nature of tunneling phase time for various quantum mechanical structures such as networ...
A traversal time that has no problem of supertuminality was advanced for particles to runnel through...
We report a study of the effect of relativity on the tunneling time for the process of the tunneling...
In the context of superluminal propagation of wave packets through potential barriers, the tunneling...
Wavepacket tunneling, in the relativistic limit, is studied via solutions to the Dirac equation for ...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Based on the Dirac equation, the behavi...
It is shown that the results of Buttiker and Landauer on the traversal time of quantum tunneling thr...
The quantum mechanical tunneling effect was theoretically described in the first half of the last ce...
We obtain the solutions for the tunneling zone of a one-dimensional electrostatic potential in the r...
The tunneling time problem earlier studied in Phys. Rev. Lett 108 170402 (2012) using a non-relativi...
We analyse in detail the reshaping mechanism leading to apparently 'superluminal' advancement of a w...
We study the tunneling zone solutions of a one-dimensional electrostatic potential for the relativis...
A new variant of the packet analysis to solve the tunneling time problem for the so-called completed...
A curious feature of quantum tunneling known as the MacColl-Hartman effect is the numerical observat...
We study the nature of tunneling phase time for various quantum mechanical structures such as networ...
We study the nature of tunneling phase time for various quantum mechanical structures such as networ...
A traversal time that has no problem of supertuminality was advanced for particles to runnel through...
We report a study of the effect of relativity on the tunneling time for the process of the tunneling...