Massive particle interferometry with lattice solitons
Piero Naldesi, Juan Polo, Peter D. Drummond, Vanja Dunjko, Luigi Amico, Anna Minguzzi, Maxim Olshanii
SciPost Phys. 15, 187 (2023) · published 8 November 2023
- doi: 10.21468/SciPostPhys.15.5.187
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Abstract
We discuss an interferometric scheme employing interference of bright solitons formed as specific bound states of attracting bosons on a lattice. We revisit the proposal of Castin and Weiss [Phys. Rev. Lett. vol. 102, 010403 (2009)] for using the scattering of a quantum matter-wave soliton on a barrier in order to create a coherent superposition state of the soliton being entirely to the left of the barrier and being entirely to the right of the barrier. In that proposal, it was assumed that the scattering is perfectly elastic, i.e. that the center-of-mass kinetic energy of the soliton is lower than the chemical potential of the soliton. Here we relax this assumption: By employing a combination of Bethe ansatz and DMRG-based analysis of the dynamics of the appropriate many-body system, we find that the interferometric fringes persist even when the center-of-mass kinetic energy of the soliton is above the energy needed for its complete dissociation into constituent atoms.
Cited by 2
Authors / Affiliations: mappings to Contributors and Organizations
See all Organizations.- 1 Piero Naldesi,
- 2 Juan Polo,
- 3 Peter D. Drummond,
- 4 Vanja Dunjko,
- 2 Luigi Amico,
- 1 Anna Minguzzi,
- 4 Maxim Olshanii
- 1 Université Grenoble Alpes / Grenoble Alpes University [UGA]
- 2 معهد الابتكار التكنولوجي / Technology Innovation Institute [TII]
- 3 Swinburne University of Technology
- 4 University of Massachusetts Boston