E
E. Lucioni
Researcher at University of Florence
Publications - 10
Citations - 774
E. Lucioni is an academic researcher from University of Florence. The author has contributed to research in topics: Ultracold atom & Phase transition. The author has an hindex of 9, co-authored 10 publications receiving 620 citations.
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Journal ArticleDOI
Observation of a Dipolar Quantum Gas with Metastable Supersolid Properties.
L. Tanzi,E. Lucioni,Francesca Famà,Jacopo Catani,Andrea Fioretti,Carlo Gabbanini,R. N. Bisset,Luis Santos,Giovanni Modugno +8 more
TL;DR: In a combined experimental and theoretical analysis, this work determines the parameter regime for the formation of coherent stripes, whose lifetime of a few tens of milliseconds is limited by the eventual destruction of the stripe pattern due to three-body losses.
Journal ArticleDOI
Observation of subdiffusion in a disordered interacting system.
E. Lucioni,B. Deissler,L. Tanzi,G. Roati,Matteo Zaccanti,Michele Modugno,M. Larcher,Franco Dalfovo,Massimo Inguscio,Giovanni Modugno +9 more
TL;DR: The observations confirm the nature of subdiffusion as interaction-assisted hopping between localized states and highlight a role of the spatial correlation of the disorder.
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Observation of a disordered bosonic insulator from weak to strong interactions.
Chiara D'Errico,E. Lucioni,L. Tanzi,Lorenzo Gori,Guillaume Roux,Ian P. McCulloch,Thierry Giamarchi,Massimo Inguscio,Giovanni Modugno +8 more
TL;DR: Evidence of an insulating regime extending from weak to strong interaction and surrounding a superfluidlike regime is obtained, in general agreement with the theory.
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Mott transition for strongly interacting one-dimensional bosons in a shallow periodic potential
G. Boéris,Lorenzo Gori,Maarten Hoogerland,Avinash Kumar,E. Lucioni,L. Tanzi,Massimo Inguscio,Thierry Giamarchi,Chiara D'Errico,Giuseppe Carleo,Giovanni Modugno,Laurent Sanchez-Palencia +11 more
TL;DR: In this article, a theoretical analysis based on quantum Monte Carlo simulations in continuum space and Luttinger liquid approach with experiments on ultracold atoms with tunable interactions and optical lattice depth is presented.
Journal ArticleDOI
Transport of a Bose Gas in 1D Disordered Lattices at the Fluid-Insulator Transition
L. Tanzi,E. Lucioni,Saptarishi Chaudhuri,Lorenzo Gori,Avinash Kumar,Chiara D'Errico,Massimo Inguscio,Giovanni Modugno +7 more
TL;DR: A sharp crossover from a weakly dissipative regime to a strongly unstable one at a disorder-dependent critical momentum is observed at the predicted zero-temperature superfluid-Bose glass transition.