papers

Publications (6)

cond-mat.quant-gas2015

Density functional theory for strongly-correlated bosonic and fermionic ultracold dipolar and ionic gases

F. Malet, A. Mirtschink, C. B. Mendl +4

We introduce a density functional formalism to study the ground-state properties of strongly-correlated dipolar and ionic ultracold bosonic and fermionic gases, based on the self-c…

cond-mat.quant-gas2016

Few-body precursor of the Higgs mode in a superfluid Fermi gas

J. Bjerlin, S. M. Reimann, G. M. Bruun

We demonstrate that an undamped few-body precursor of the Higgs mode can be investigated in a harmonically trapped Fermi gas. Using exact diagonalisation, the lowest monopole mode…

cond-mat.quant-gas2014

Quantum magnetism without lattices in strongly interacting one-dimensional spinor gases

F. Deuretzbacher, D. Becker, J. Bjerlin +2

We show that strongly interacting multicomponent gases in one dimension realize an effective spin chain, offering an alternative simple scenario for the study of one-dimensional qu…

cond-mat.quant-gas2017

Spin-chain model for strongly interacting one-dimensional Bose-Fermi mixtures

F. Deuretzbacher, D. Becker, J. Bjerlin +2

Strongly interacting one-dimensional (1D) Bose-Fermi mixtures form a tunable XXZ spin chain. Within the spin-chain model developed here, all properties of these systems can be calc…

cond-mat.quant-gas2023

Superfluid-droplet crossover in a binary boson mixture on a ring: Exact diagonalization solutions for few-particle systems in one dimension

L. Chergui, J. Bengtsson, J. Bjerlin +3

We investigate the formation of self-bound quantum droplets in a one-dimensional binary mixture of bosonic atoms, applying the method of numerical diagonalization of the full Hamil…

cond-mat.quant-gas2017

Dipolar particles in a double-trap confinement: Response to tilting the dipolar orientation

J. Bjerlin, J. Bengtsson, F. Deuretzbacher +2

We analyze the microscopic few-body properties of dipolar particles confined in two parallel quasi-one-dimensional harmonic traps. In particular, we show that an adiabatic rotation…