F.F. Bellotti, A.S. Dehkharghani, and N.T. Zinner: Comparing numerical and analytical approaches to strongly interacting Fermi-Fermi and Bose-Fermi mixtures in one dimensional traps, arXiv:1606.09528.
N.J.S. Loft, L.B. Kristensen, A.E. Thomsen, A.G. Volosniev, and N.T. Zinner: CONAN -- the cruncher of local exchange coefficients for strongly interacting confined systems in one dimension, arXiv:1603.02662. Source files for CONAN code can be found at this link.
M.E.S. Andersen, A.S. Dehkharghani, A.G. Volosniev, E.J. Lindgren, and N.T. Zinner: An interpolatory ansatz for describing one-dimensional confined Fermi systems, arXiv:1512.08905. Published version: Scientific Reports 6, 28362 (2016).
N.J.S. Loft, O.V. Marchukov, D. Petrosyan, and N.T. Zinner: Tunable self-assembled spin chains of strongly interacting cold atoms, arXiv:1512.06722. Published version: New J. Phys. 18 (2016) 045011.
O.V. Marchukov, E.H. Eriksen, J.M. Midtgaard, A.A.S. Kalaee, D.V. Fedorov, A.S. Jensen, and N.T. Zinner: Computation of local exchange coefficients in strongly interacting one-dimensional few-body systems: local density approximation and exact results, arXiv:1508.07164. Published version: Eur. Phys. J. D (2016) 70: 32.
N.J.S. Loft, L.B. Kristensen, A.E. Thomsen, and N.T. Zinner: Comparing models for the ground state energy of a trapped one-dimensional Fermi gas with a single impurity, arXiv:1508.05917. Published version: J. Phys. B:At. Mol. Opt. Phys. 49 (2016) 125305.
M. Valiente, L.G. Phillips, N.T. Zinner, and P. Öhberg: Fermionic Luttinger liquids from a microscopic perspective, arXiv:1505.03519.
A.G. Volosniev, D.V. Fedorov, A.S. Jensen, N.T. Zinner, and M. Valiente: Multicomponent Strongly Interacting Few-Fermion Systems in One Dimension, arXiv:1504.05861. Published version Few-Body Systems 55 (2014) 898-842.
J.K. Pedersen, D.V. Fedorov, A.S. Jensen, and N.T. Zinner: Quantum single-particle properties in a one-dimensional curved space, arXiv:1504.04177
D.V. Fedorov, M. Mikkelsen, A.S. Jensen, and N.T. Zinner: Analytic expression for three-body recombination rates into deep dimers, arXiv:1503.04024. Published version: Few-Body Systems 56 (2015) 889-896.
K.K. Hansen, D.V. Fedorov, A.S. Jensen, and N.T. Zinner: Classical crystal formation of dipoles in two dimensions, arXiv:1503.04014. Published version: Phys. Scr. 90 125002 (2015).
N.J.S. Loft, A.S. Dehkharghani, N.P. Mehta, A.G. Volosniev, and N.T. Zinner: A variational approach to repulsively interacting three-fermion systems in a one-dimensional harmonic trap, arXiv:1411.6544. Published version: Eur. Phys. J. D (2015) 69: 65.
O.V. Marchukov, D.V. Fedorov, A.S. Jensen, A.G. Volosniev, and N.T. Zinner: Repulsively interacting fermions in a two-dimensional deformed trap with spin-orbit coupling, arXiv:1409.4206. Published version: Eur. Phys. J. D (2015) 69:73.
A.G. Volosniev, D.V. Fedorov, A.S. Jensen, and N.T. Zinner: Hyperspherical Treatment of Strongly-Interacting Few-Fermion Systems in One Dimension, arXiv:1408.6058. Published version: Eur. Phys. J. ST 224 585 (2015).
A.G. Volosniev et al.: Engineering the Dynamics of Effective Spin-Chain Models for Strongly Interacting Atomic Gases, arXiv:1408.3414. Published version: Phys. Rev. A 91, 023620 (2015).
E.J. Lindgren, J. Rotureau, C. Forssén, A.G. Volosniev, and N.T.Zinner: Fermionization of two-component few-fermion systems in a one-dimensional harmonic trap, New J. Phys. 16 (2014) 063003.
M.T. Yamashita, F.F. Bellotti, T. Frederico, D.V. Fedorov, A.S. Jensen, and N.T. Zinner: Dimensional crossover transitions of strongly interacting two- and three-boson systems, arXiv:1404.7002. Published version: J. Phys. B: At. Mol. Opt. Phys. 48 (2015) 025302. Paper is highlighted in LabTalk.
J.K. Pedersen, D.V. Fedorov, A.S. Jensen, and N.T. Zinner: Crystal formation of dipolar particles in a helical geometry, J. Phys. B: At. Mol. Opt. Phys. 47 (2014) 165103. Paper has been featured in J. Phys. B. front page as LabTalk.
F.F. Bellotti et al.: Universality of Three-Body Systems in 2D: Parametrization of the Bound States Energies, Few-Body Systems 55 (2014) 1025-1027.
F.F. Bellotti et al.: Mass-Imbalanced Three-Body Systems in 2D: Bound States and the Analytical Approach to the Adiabatic Potential, Few-Body Systems 55 (2014) 847-850.
O.V. Marchukov, A.G. Volosniev, D.V. Fedorov, A.S. Jensen, and N.T. Zinner: Spin-Orbit Coupling in Deformed Harmonic Traps, Few-Body Systems 55 (2014) 1045-1047.