2021-10-22T13:04:10Z
2021-10-22T13:04:10Z
2020-07-21
2021-10-22T13:04:10Z
We provide a detailed study of the properties of a few interacting spin 1/2 fermions trapped in a one-dimensional harmonic oscillator potential. The interaction is assumed to be well represented by a contact delta potential. Numerical results obtained by means of direct diagonalization techniques are combined with analytical expressions for both the non-interacting and strongly interacting regime. The N=2 case is used to benchmark our numerical techniques with the known exact solution of the problem. After a detailed description of the numerical methods, in a tutorial-like manner, we present the static properties of the system for N=2,3,4 and 5 particles, e.g., low-energy spectrum, one-body density matrix, ground-state densities. Then, we consider dynamical properties of the system exploring first the excitation of the breathing mode, using the dynamical structure function and corresponding sum-rules, and then a sudden quench of the interaction strength.
Article
Published version
English
Fermions; Energia; Física de partícules; Fermions; Energy; Particle physics
MDPI
Reproducció del document publicat a: https://doi.org/10.3390/math8071196
Mathematics, 2020, vol. 8, num. 7, p. 1196
https://doi.org/10.3390/math8071196
cc-by (c) Rojo Francàs, Abel et al., 2020
https://creativecommons.org/licenses/by/4.0/