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michele.rota@uniroma1.it
Michele Rota
Ricercatore
Struttura:
DIPARTIMENTO DI FISICA
E-mail:
michele.rota@uniroma1.it
Pagina istituzionale corsi di laurea
Curriculum Sapienza
Pubblicazioni
Titolo
Pubblicato in
Anno
Daylight entanglement-based quantum key distribution with a quantum dot source
QUANTUM SCIENCE AND TECHNOLOGY
2023
Signatures of the Optical Stark Effect on Entangled Photon Pairs from Resonantly Pumped Quantum Dots
PHYSICAL REVIEW LETTERS
2023
Quantum violation of local causality in an urban network using hybrid photonic technologies
OPTICA
2022
Multipair-free source of entangled photons in the solid state
PHYSICAL REVIEW. B
2022
Multipair Emission Effects in Quantum Dot-based Entangled Photon Sources
Proceedings Volume 12206, Quantum Nanophotonic Materials, Devices, and Systems 2022
2022
Quantum teleportation with imperfect quantum dots
NPJ QUANTUM INFORMATION
2021
Quantum key distribution with entangled photons generated on demand by a quantum dot
SCIENCE ADVANCES
2021
Quantum dot technology for quantum repeaters: from entangled photon generation toward the integration with quantum memories
MATERIALS FOR QUANTUM TECHNOLOGY
2021
Entanglement Teleportation with Photons from Quantum Dots: Toward a Solid-State Based Quantum Network
IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS
2020
Surface passivation and oxide encapsulation to improve optical properties of a single GaAs quantum dot close to the surface
APPLIED SURFACE SCIENCE
2020
Entanglement swapping with photons generated on demand by a quantum dot
PHYSICAL REVIEW LETTERS
2019
All-photonic quantum teleportation using on-demand solid-state quantum emitters
SCIENCE ADVANCES
2018
Critical temperature for the conversion from wurtzite to zincblende of the optical emission of InAs nanowires
JOURNAL OF PHYSICAL CHEMISTRY. C
2017
Bandgap energy of wurtzite InAs nanowires
NANO LETTERS
2016
Progetti di Ricerca
Unlocking the full potential of 2D material single-photon emitters: Purcell enhanced and strain-tunable transition metal dichalcogenides quantum dots.
Deterministic excitation of quadexciton in a single GaAs quantum dot: a reliable way to produce a cascade of four quantum correlated photons.
A more than perfect source of entangled photons: piezo-strained quantum dots in a circular Bragg resonator
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