[1]
A. Gallemí, M. Guilleumas, R. Mayol, and A. Sanpera, The role of anisotropy in dipolar bosons in triple-well potentials, Phys. Rev. A 88, 063645 (2013).
[2]
A. Gallemí, M. Guilleumas, R. Mayol, and M. Pi, Propagation of Collective Modes in Non-Overlapping Dipolar Bose-Einstein Condensates, in J. Phys.: Conf. Ser., Vol. 497 (2014), p. 012035.
[3]
A. M. Mateo, A. Gallemí, M. Guilleumas, and R. Mayol, Persistent currents supported by solitary waves in toroidal bose-einstein condensates, Phys. Rev. A 91, 063625 (2015).
[4]
A. Gallemí, M. Guilleumas, J. Martorell, R. Mayol, A. Polls, and B. Juliá-Díaz, Fragmented condensation in bose-hubbard trimers with tunable tunnelling, New J. Phys. 17, 074014 (2015).
[5]
A. Gallemí, A. M. Mateo, R. Mayol, and M. Guilleumas, Coherent quantum phase slip in two-component bosonic atomtronic circuits, New J. Phys. 18, 015003 (2016).
[6]
A. Gallemí, M. Guilleumas, R. Mayol, and A. M. Mateo, Multidimensional josephson vortices in spin-orbit coupled bose-einstein condensates: Snake instability and decay through vortex dipoles, Phys. Rev. A 93, 033618 (2016).
[7]
A. Gallemí, M. Guilleumas, J. Martorell, R. Mayol, A. Polls, and B. Juliá-Díaz, Robustness of discrete semifluxons in closed bose–hubbard chains, New J. Phys. 18, 075005 (2016).
[8]
A. Gallemí, G. Queraltó, M. Guilleumas, R. Mayol, and A. Sanpera, Quantum spin models with mesoscopic bose-einstein condensates, Phys. Rev. A 94, 063626 (2016).
[9]
A. Gallemí, L. P. Pitaevskii, S. Stringari, and A. Recati, Magnetic defects in an imbalanced mixture of two bose-einstein condensates, Phys. Rev. A 97, 063615 (2018).
[10]
A. Gallemí, M. Guilleumas, M. Richard, and A. Minguzzi, Interaction-enhanced flow of a polariton persistent current in a ring, Phys. Rev. B 98, 104502 (2018).
[11]
G. Ferioli, G. Semeghini, L. Masi, G. Giusti, G. Modugno, M. Inguscio, A. Gallemí, A. Recati, and M. Fattori, Collisions of self-bound quantum droplets, Phys. Rev. Lett. 122, 090401 (2019).
[12]
A. Gallemí, L. P. Pitaevskii, S. Stringari, and A. Recati, Decay of the relative phase domain wall into confined vortex pairs: The case of a coherently coupled bosonic mixture, Phys. Rev. A 100, 023607 (2019).
[13]
S. M. Roccuzzo, A. Gallemí, A. Recati, and S. Stringari, Rotating a supersolid dipolar gas, Phys. Rev. Lett. 124, 045702 (2020).
[14]
A. Gallemí, S. M. Roccuzzo, S. Stringari, and A. Recati, Quantized vortices in dipolar supersolid bose-einstein condensed gases, Phys. Rev. A 102, 023322 (2020).
[15]
A. Farolfi, A. Zenesini, D. Trypogeorgos, C. Mordini, A. Gallemí, A. Roy, A. Recati, G. Lamporesi, and G. Ferrari, Quantum-torque-induced breaking of magnetic domain walls in ultracold gases, Nature Physics 17, 1359 (2021).
[16]
A. Gallemí and L. Santos, Superfluid properties of a honeycomb dipolar supersolid, Phys. Rev. A 106, 063301 (2022).
[17]
M. Arazo, A. Gallemí, M. Guilleumas, R. Mayol, and L. Santos, Self-bound crystals of antiparallel dipolar mixtures, Phys. Rev. Research 5, 043038 (2023).
[18]
D. Scheiermann, A. Gallemí, and L. Santos, Excitation spectrum of a double supersolid in a trapped dipolar bose mixture, Phys. Rev. A 111, 033310 (2025).