arXiv · 2206.02955
Effects of spatial nonlocality versus nonlocal causality for bound electrons in external fields
Abstract
Using numerically exact solution of the time-dependent Schroedinger equation together with time-dependent quantum Monte Carlo (TDQMC) calculations we compare the effects of spatial nonlocality versus nonlocal causality for the ground state and for real-time evolution of two entangled electrons in parabolic potential in one spatial dimension. It was found that the spatial entanglement quantified by the linear quantum entropy is predicted with good accuracy using the spatial nonlocality, parameterized naturally within the TDQMC approach. At the same time, the nonlocal causality predicted by the exact solution leads to only small oscillations in the quantum trajectories which belong to the idler electron as the driven electron is subjected to a strong high frequency electric field, without interaction between the electrons.
Explore related subjects
Keep this discovery
Ivan P. Christov. 2022-06-07. Effects of spatial nonlocality versus nonlocal causality for bound electrons in external fields. https://doi.org/10.3390/e24060840
Cite the original work for its findings. Save a collection to share your selection of sources.