F
Francesca Maria Marchetti
Researcher at Autonomous University of Madrid
Publications - 66
Citations - 4067
Francesca Maria Marchetti is an academic researcher from Autonomous University of Madrid. The author has contributed to research in topics: Polariton & Superfluidity. The author has an hindex of 17, co-authored 63 publications receiving 3533 citations. Previous affiliations of Francesca Maria Marchetti include University of Cambridge & University of Oxford.
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Journal ArticleDOI
Bose-Einstein condensation of exciton polaritons
Jacek Kasprzak,Maxime Richard,S. Kundermann,A. Baas,P. Jeambrun,Jonathan Keeling,Francesca Maria Marchetti,Marzena H. Szymańska,Régis André,Jl Staehli,Vincenzo Savona,Peter B. Littlewood,Benoit Deveaud,Le Si Dang +13 more
TL;DR: A comprehensive set of experiments giving compelling evidence for BEC of polaritons of bosonic quasi-particles are detailed, which indicate the spontaneous onset of a macroscopic quantum phase.
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Persistent currents and quantized vortices in a polariton superfluid
Daniele Sanvitto,Francesca Maria Marchetti,Marzena H. Szymańska,Marzena H. Szymańska,Guilherme Tosi,Matthias Baudisch,Fabrice P. Laussy,D. N. Krizhanovskii,M. S. Skolnick,Lorenzo Marrucci,Aristide Lemaître,Jacqueline Bloch,Carlos Tejedor,Luis Viña +13 more
TL;DR: In this paper, quantized vortices and persistent currents were observed in such condensates, which are hallmarks of superfluid behavior in semiconductor microcavities.
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Finite-temperature phase diagram of a polarized Fermi condensate
TL;DR: In this paper, the authors show that the finite-temperature phase diagram contains a region of phase separation between the superfluid and normal states that touches the boundary of second-order superfluid transitions at a tricritical point, reminiscent of the phase diagram of 3He-4He mixtures.
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Collective coherence in planar semiconductor microcavities
TL;DR: In this article, the authors discuss the significant experimental progress to date, the phenomena associated with coherence which have been observed and also discuss in some detail the different theoretical models that have been used to study such systems.
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Nonequilibrium Phase Transition in a Two-Dimensional Driven Open Quantum System
Galbadrakh Dagvadorj,Jonathan M. Fellows,S. Matyjaśkiewicz,Francesca Maria Marchetti,Iacopo Carusotto,Marzena H. Szymańska +5 more
TL;DR: The transition between a superfluid and a normal fluid in two dimensions can be understood in terms of the proliferation of topological defects as mentioned in this paper, and it is theoretically analyzed in the far-from-equilibrium context of a quantum fluid of exciton polaritons.