Curriculum vitae and a list of a person's publications

Ferran Mazzanti

tel: +34 93 4016967
fax: +34 93 4017100
email: ferran.mazzantiupc.edu
office: B5-208
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[1] J. Martí, F. Mazzanti, G. E. Astrakharchik, L. Batet, L. Portos-Amill, B. Pedreño,
Nucleation of helium in liquid lithium,
, (2022) [arXiv]
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[2] J. Sánchez-Baena, J. Boronat, F. Mazzanti,
Supersolid stripe droplets in a Raman spin-orbit-coupled system,
Phys. Rev. A 102, 053308 (2020) [journal] [arXiv]
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[3] J. Sánchez-Baena, J. Boronat, F. Mazzanti,
Supersolid stripes enhanced by correlations in a Raman spìn-orbit-coupled system,
Phys. Rev. A 101, 043602 (2020) [journal]
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[4] R. Bombín, F. Mazzanti, J. Boronat,
Reply to “Comment on ‘Berezinskii-Kosterlitz-Thouless transition in two-dimensional dipolar stripes’ “,
Phys. Rev. A 102, 047302 (2020) [journal] [arXiv]
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[5] Fabian Böttcher, Matthias Wenzel, Jan-Niklas Schmidt, Mingyang Guo, Tim Langen, Igor Ferrier-Barbut, Tilman Pfau, Raúl Bombín, Joan Sánchez-Baena, Jordi Boronat, Ferran Mazzanti,
Dilute dipolar quantum droplets beyond the extended Gross-Pitaevskii equation,
Phys. Rev. Research 1, 033088 (2019) [journal] [arXiv]
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[6] M. C. Gordillo, F. Mazzanti, J. Boronat,
One-dimensional harmonically confined SU(N) fermions,
Phys. Rev. A 100, 023603 (2019)
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[7] R. Bombín, F. Mazzanti, J. Boronat,
Berezinskii-Kosterlitz-Thouless transition in two-dimensional dipolar stripes,
Phys. Rev. A 100, 063614 (2019)
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[8] Raúl Bombín, Tommaso Comparin, Gianluca Bertaina, Ferran Mazzanti, Stefano Giorgini, Jordi Boronat,
Two-dimensional repulsive Fermi polarons with short and long-range interactions,
Phys. Rev. A 100, 023608 (2019) [journal] [arXiv]
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[9] Tommaso Comparin, Raul Bombin, Markus Holzmann, Ferran Mazzanti, Jordi Boronat, Stefano Giorgini,
Two-dimensional Mixture of Dipolar Fermions: Equation of State and Magnetic Phases,
Phys. Rev. A 99, 043609 (2019) [journal] [arXiv]
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[10] J. Sánchez-Baena, F. Mazzanti, J. Boronat,
Few trapped quantum dipoles: quantum versus classical structures,
New Journal of Physics 20, 013038 (2018)
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[11] J. Sánchez-Baena, J. Boronat, F. Mazzanti,
Diffusion Monte Carlo methods for spin-orbit-coupled ultracold Bose gases,
Phys. Rev. A 98, 053632 (2018) [journal] [arXiv]
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[12] Enrique Romero Merino, Ferran Mazzanti Castrillejo, Jordi Delgado Pin,
Neighborhood-Based Stopping Criterion for Contrastive Divergence,
IEEE TNNLS PP, 1 (2017) [journal]
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[13] Grigory E. Astrakharchik, Konstantin V. Krutitsky, Maciej Lewenstein, Ferran Mazzanti, Jordi Boronat,
Optical lattices as a tool to study defect-induced superfluidity,
Phys. Rev. A 96, 033606 (2017) [journal]
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[14] R. Bombin, J. Boronat, and F. Mazzanti,
Dipolar Bose Supersolid Stripes,
Phys. Rev. Lett. 119, 250402 (2017) [journal]
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[15] A. Macia, J. Sánchez-Baena, J. Boronat, F. Mazzanti,
Droplets of trapped quantum dipolar bosons,
Phys. Rev. Lett. 117, 205301 (2016) [journal]
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[16] G. E. Astrakharchik, R. E. Zillich, F. Mazzanti, J. Boronat,
Gapped spectrum in pair-superfluid bosons,
Phys. Rev. A 94, 063630 (2016)
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[17] Grigory E. Astrakharchik, Konstantin V. Krutitsky, Maciej Lewenstein, Ferran Mazzanti,
One-dimensional Bose gas in optical lattices of arbitrary strength,
Phys. Rev. A 93, 021605(R) (2016) [journal]
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[18] R. Rota, J. Casulleras, F. Mazzanti, J. Boronat,
Quantum Monte Carlo estimation of complex-time correlations for the study of the ground-state dynamic structure function,
Journal of Chemical Physics 142, 114114 (2015) [journal]
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[19] A. Macia, G. E. Astrakharchik, F. Mazzanti, S. Giorgini, J. Boronat,
Single-particle versus pair superfluidity in a bilayer system of dipolar bosons,
Phys. Rev. A 90, 043623 (2014) [journal]
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[20] A. Macia, J. Boronat, F. Mazzanti,
Phase diagram of dipolar bosons in 2D with tilted polarization,
Phys. Rev. A 90, 061601(R)/ (2014) [journal]
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[21] A. Macia, D. Hufnagl, F. Mazzanti, J. Boronat, R. Zillich,
Excitations and stripe phase formation in a two-dimensional dipolar Bose gas with tilted polarization,
Phys. Rev. Lett. 109, 235307 (2012)
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[22] A. Macia, F. Mazzanti, J. Boronat,
Ground state properties and excitation spectrum of a two dimensional gas of bosonic dipoles,
European Physical Journal D 66, 301 (2012)
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[23] F. Arias de Saavedra, F. Mazzanti, J. Boronat, A. Polls,
Ferromagnetic transition of a two-component Fermi gas of hard spheres,
Phys. Rev. A 85, 033615 (2012)
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[24] O. N. Osychenko, G. E. Astrakharchik, F. Mazzanti, and J. Boronat,
Zero-temperature phase diagram of Yukawa bosons,
Phys. Rev. A 85, 063604 (2012) [journal]
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[25] R. Sarjonen, M. Saarela, F. Mazzanti,
The effective two-particle interaction of cold atoms as derived from bragg scattering,
J. Low. Temp. Phys. 169, 400 - 422 (2012)
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[26] A. Macia, F. Mazzanti, J. Boronat, R. Zillich,
Microscopic description of anisotropic low-density dipolar Bose gases in two dimensions,
Phys. Rev. A 84, 033625 (2011)
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[27] R. Sarjonen, M. Saarela, F. Mazzanti,
Elementary excitations and universal interaction in Bose-Einstein condensates at large scattering lengths,
Phys. Rev. A 84, 041602 (2011)
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[28] R. Sarjonen, M. Saarela, F. Mazzanti,
Scaling of the interaction in BECs at large scattering lengths,
European physical journal D 65, 25 (2011)
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[29] G. E. Astrakharchik, J. Boronat, I. L. Kurbakov, Yu. E. Lozovik, and F. Mazzanti,
Low-dimensional weakly interacting Bose gases: Nonuniversal equations of state,
Phys. Rev. A 81, 013612 (2010) [journal]
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[30] R. Rota, J. Casulleras, F. Mazzanti, J. Boronat,
High-order time expansion path integral ground state,
Phys. Rev. E 81, 016707 (2010)
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[31] M. Saarela, F. Mazzanti,
Dynamic Structure Function of quantum Bose systems; condensate fraction and momentum distribution,
Cond. Matt. Theor. 23, 4327-4337 (2009)
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[32] E. Farguell, F. Mazzanti, E. Gómez-Ramírez,
Boltzmann machine reduction by high order decimation,
IEEE Trans. on Neu. Net 19, 1816 (2008)
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[33] F. Mazzanti, G. E. Astrakharchik, J. Boronat, and J. Casulleras,
Off-diagonal ground-state properties of a one-dimensional gas of Fermi hard rods,
Phys. Rev. A 77, 043632 (2008) [journal]
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[34] F. Mazzanti, G.E. Astrakharchik, J. Boronat, and J. Casulleras,
Ground-state properties of a one-dimensional system of Hard Rods,
Phys. Rev. Lett. 100, 020401 (2008) [journal]
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[35] F. Mazzanti, G.E. Astrakharchik, J. Boronat, and J. Casulleras,
Static properties of a system of Bose hard rods in one-dimension,
Proceedings of the Fourteenth International Conference, edited J. Boronat, G. E. Astrakharchik and F. Mazzanti (World Scientific, Singapore) , 116 (2008) [journal]
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[36] M. Saarela, F. Mazzanti, V. Apaja,
Dynamic Structure Function of quantum Bose systems; condensate fraction and momentum distribution,
Int. J. Mod. Phys. 22, 4327 (2008)
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[37] M. Saarela, F. Mazzanti, V. Apaja,
Condensate fraction in the dynamic structure function of Bose fluids,
Int. J. Mod. Phys. B 21, 2169 (2007)
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[38] F.Mazzanti, M.Saarela, V.Apaja,
Variational Description of a Weakly Interacting Bose Gas in 3 Dimensions,
Int. J. Mod. Phys. B 20, 5061 (2006)
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[39] F.Mazzanti, A.Polls, A.Fabrocini,
Energy and Structure of Hard-Sphere Bose Gases in Three and Two Dimensions,
J. Low. Temp. Phys. 138, 735-740 (2005)
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[40] F.Mazzanti, A.Polls, A.Fabrocini,
Ground-State Properties of a Dilute Homogeneous Bose Gas of Hard Disks in Two Dimensions,
Phys. Rev. A 71, 033615 (2005)
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[41] F. Mazzanti, A. Polls, J. Boronat, J. Casulleras,
High momentum response of liquid 3He,
Phys. Rev. Lett. 92, 085301 (2004)
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[42] F. Mazzanti, J. Boronat, A. Polls,
High momentum response of liquid 3He,
Condensed Matter Theories 18, 491 (2003)
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[43] F.Mazzanti, A.Polls, A.Fabrocini,
Energy and Structure of Dilute Hard- and Soft-Sphere Gases,
Phys. Rev. A 67, 063615 (2003)
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[44] E.Sola, A.Polls, F.Mazzanti,
Dynamic Susceptibility of the Free Fermi Gas in 2D,
J. Low. Temp. Phys. 127, 29-49 (2002)
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[45] J. Mur-Petit, A. Polls, F. Mazzanti,
The Variational principle and Simple properties of the Ground-State Wave Function,
Am. J. Phys. 70, 808 (2002)
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[46] F. Mazzanti, A. Polls, J. Boronat,
High-momentum dynamic structure function of liquid 3He-4He mixtures: a microscopic approach,
Phys. Rev. B 63, 054521-1— (2001)
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[47] F.Mazzanti, A.Polls,
Finite Temperature Dynamic Susceptibility of the Free Bose Gas,
Phys. Lett. A 283, 136-145 (2001)
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[48] F. Mazzanti, A. Polls, J. Boronat,
High momentum response of helium mixtures,
Condensed Matter Theories 14, 427-436 (2000)
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[49] F.Mazzanti,
Final State Effects in the high q Response of 3He-4He Mixtures,
Phys. Lett. A 270, 204-213 (2000)
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[50] A.S. Rinat, M.F.Taragin, F.Mazzanti, A.Polls,
Large-q Neutron Inclussive-Scattering Data from Liquid 4He,
Phys. Rev. B 57, 5347-5357 (1998)
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[51] A.Fabrocini, F.Mazzanti, A.Polls, L.Vich,
A Microscopi Study of the Dynamics of 3He-4He Mixtures,
Czech. J. Phys. 46, 305 (1996)
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[52] F. Mazzanti, A. Polls, J. Boronat,
Coherent and incoherent dynamic structure functions of the free Fermi gas,
Physics Letters A 220, 251-257 (1996)
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[53] F. Mazzanti, J. Boronat, A. Polls,
Final-state effects on superfluid 4He in the deep inelastic regime,
Phys. Rev. B 53, 5661-5669 (1996)
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[54] A. Polls, F. Mazzanti, J. Boronat, F. Dalfovo, A. Fabrocini,
Dynamic structure function of 3He-4He mixtures in the deep inelastic regime,
Recent Progress in Many-Body Theories, ed. E. Schachinger et al., Plenum Press, New York , 101 (1995)
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[55] J. Boronat, F. Dalfovo, F. Mazzanti, A. Polls,
Dynamic structure function in 3He-4He mixtures,
Physica B 194 & 196, 859-860 (1994)
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[56] J. Boronat, F. Dalfovo, F. Mazzanti, A. Polls,
Dynamic structure function in 3He-4He mixtures,
Phys. Rev. B 48, 7409-7418 (1993)
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