Back to Search Start Over

Keldysh-Rutherford Model for the Attoclock

Authors :
Bray, Alexander
Eckart, Sebastian
Kheifets, Anatoli
Bray, Alexander
Eckart, Sebastian
Kheifets, Anatoli
Source :
Physical Review Letters
Publication Year :
2018

Abstract

We demonstrate a clear similarity between attoclock offset angles and Rutherford scattering angles taking the Keldysh tunneling width as the impact parameter and the vector potential of the driving pulse as the asymptotic velocity. This simple model is tested against the solution of the time-dependent Schrodinger equation using hydrogenic and screened (Yukawa) potentials of equal binding energy. We observe a smooth transition from a hydrogenic to "hard-zero" intensity dependence of the offset angle with variation of the Yukawa screening parameter. Additionally, we make a comparison with the attoclock offset angles for various noble gases obtained with the classical-trajectory Monte Carlo method. In all cases we find a close correspondence between the model predictions and numerical calculations. This suggests a largely Coulombic origin of the attoclock offset angle and casts further doubt on its interpretation in terms of a finite tunneling time.

Details

Database :
OAIster
Journal :
Physical Review Letters
Notes :
en_AU
Publication Type :
Electronic Resource
Accession number :
edsoai.on1291846683
Document Type :
Electronic Resource