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Daniele Sanvitto

Explore the profile of Daniele Sanvitto including associated specialties, affiliations and a list of published articles. Areas
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Articles 48
Citations 394
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Recent Articles
1.
Trypogeorgos D, Gianfrate A, Landini M, Nigro D, Gerace D, Carusotto I, et al.
Nature . 2025 Mar; 639(8054):337-341. PMID: 40044862
A supersolid is a counter-intuitive phase of matter in which its constituent particles are arranged into a crystalline structure, yet they are free to flow without friction. This requires the...
2.
Nigro D, Trypogeorgos D, Gianfrate A, Sanvitto D, Carusotto I, Gerace D
Phys Rev Lett . 2025 Feb; 134(5):056002. PMID: 39983151
Condensation of exciton polaritons has been recently observed in gap-confined states of one-dimensional photonic crystal waveguides. Here we focus on the theoretical emergence of a second emission threshold in this...
3.
Kedziora M, Opala A, Mastria R, De Marco L, Krol M, Lempicka-Mirek K, et al.
Nat Mater . 2025 Feb; PMID: 39979521
No abstract available.
4.
Voronova N, Grudinina A, Panico R, Trypogeorgos D, De Giorgi M, Baldwin K, et al.
Nat Commun . 2025 Jan; 16(1):466. PMID: 39774703
Macroscopic coherence in quantum fluids allows the observation of interference effects in their wavefunctions, and enables applications such as superconducting quantum interference devices based on Josephson tunneling. The Josephson effect...
5.
Lempicka-Mirek K, Krol M, De Marco L, Coriolano A, Polimeno L, Viola I, et al.
Nanophotonics . 2024 Dec; 13(14):2659-2668. PMID: 39678658
Optoelectronic and spinoptronic technologies benefit from flexible and tunable coherent light sources combining the best properties of nano- and material-engineering to achieve favorable properties such as chiral lasing and low...
6.
Zhao J, Fieramosca A, Bao R, Dini K, Su R, Sanvitto D, et al.
Nat Commun . 2024 Aug; 15(1):7601. PMID: 39217138
Transition-metal dichalcogenide monolayers possess large exciton binding energy and a robust valley degree of freedom, making them a viable platform for the development of spintronic devices capable of operating at...
7.
Luo Y, Zhao J, Fieramosca A, Guo Q, Kang H, Liu X, et al.
Light Sci Appl . 2024 Aug; 13(1):203. PMID: 39168973
In recent years, two-dimensional (2D) van der Waals materials have emerged as a focal point in materials research, drawing increasing attention due to their potential for isolating and synergistically combining...
8.
Kedziora M, Opala A, Mastria R, De Marco L, Krol M, Lempicka-Mirek K, et al.
Nat Mater . 2024 Aug; 23(11):1515-1522. PMID: 39160353
Perovskite crystals-with their exceptional nonlinear optical properties, lasing and waveguiding capabilities-offer a promising platform for integrated photonic circuitry within the strong-coupling regime at room temperature. Here we demonstrate a versatile...
9.
Fieramosca A, Mastria R, Dini K, Dominici L, Polimeno L, Pugliese M, et al.
Nano Lett . 2024 Jun; 24(27):8240-8247. PMID: 38925628
The realization of efficient optical devices depends on the ability to harness strong nonlinearities, which are challenging to achieve with standard photonic systems. Exciton-polaritons formed in hybrid organic-inorganic perovskites offer...
10.
Polimeno L, Coriolano A, Mastria R, Todisco F, De Giorgi M, Fieramosca A, et al.
Adv Mater . 2024 Apr; 36(27):e2312131. PMID: 38632702
Room temperature (RT) polariton condensate holds exceptional promise for revolutionizing various fields of science and technology, encompassing optoelectronics devices to quantum information processing. Using perovskite materials, like all-inorganic cesium lead...