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Francesco Prudenzano
Titolo
Citata da
Citata da
Anno
Evidence for non-exponential elastic proton–proton differential cross-section at low| t| and s= 8TeV by TOTEM
G Antchev, P Aspell, I Atanassov, V Avati, J Baechler, V Berardi, M Berretti, ...
Nuclear Physics B 899, 527-546, 2015
1612015
Measurement of elastic pp scattering at áTeV in the Coulomb–nuclear interference region: determination of the -parameter and the total cross-section
G Antchev, P Aspell, I Atanassov, V Avati, J Baechler, V Berardi, M Berretti, ...
The European Physical Journal C 76, 1-21, 2016
1462016
Advances on optical fiber sensors
L Mescia, F Prudenzano
Fibers 2 (1), 1-23, 2013
802013
Design of an Efficient Pumping Scheme for Mid-IR Dy3+:Ga5Ge20Sb10S65 PCF Fiber Laser
MC Falconi, G Palma, F Starecki, V Nazabal, J Troles, S Taccheo, ...
IEEE Photonics Technology Letters 28 (18), 1984-1987, 2016
752016
Fabrication of force sensors based on two-dimensional photonic crystal technology
T Stomeo, M Grande, A Qualtieri, A Passaseo, A Salhi, M De Vittorio, ...
Microelectronic Engineering 84 (5-8), 1450-1453, 2007
712007
Dysprosium-doped chalcogenide master oscillator power amplifier (MOPA) for mid-IR emission
MC Falconi, G Palma, F Starecki, V Nazabal, J Troles, JL Adam, ...
Journal of Lightwave Technology 35 (2), 265-273, 2016
692016
Photonic band gap filter for wavelength division multiplexer
A D’Orazio, M De Sario, V Petruzzelli, F Prudenzano
Optics Express 11 (3), 230-239, 2003
662003
Design of optical antenna for solar energy collection
M Gallo, L Mescia, O Losito, M Bozzetti, F Prudenzano
Energy 39 (1), 27-32, 2012
542012
Design of mid-infrared amplifiers based on fiber taper coupling to erbium-doped microspherical resonator
L Mescia, P Bia, M De Sario, A Di Tommaso, F Prudenzano
Optics Express 20 (7), 7616-7629, 2012
532012
Feasibility of Er3+-doped, Ga5Ge20Sb10S65 chalcogenide microstructured optical fiber amplifiers
M De Sario, L Mescia, F Prudenzano, F Smektala, F DÚsÚvÚday, ...
Optics & Laser Technology 41 (1), 99-106, 2009
532009
Design of praseodymium-doped chalcogenide micro-disk emitting at 4.7 Ám
G Palma, MC Falconi, F Starecki, V Nazabal, J Ari, L Bodiou, J Charrier, ...
Optics Express 25 (6), 7014-7030, 2017
502017
Erbium-doped hole-assisted optical fiber amplifier: Design and optimization
F Prudenzano
Journal of lightwave technology 23 (1), 330, 2005
482005
Evidence for non-exponential elastic proton-proton differential cross-section at low| t| and√ s= 8 TeV by TOTEM
P BroulÝm, V Georgiev, J Hammerbauer, R Linhart, L Palocko, Z Peroutka, ...
Nuclear Physics B 899, 527-546, 2015
472015
Pulsed laser deposition of praseodymium-doped chalcogenide thin films
M De Sario, G Leggieri, A Luches, M Martino, F Prudenzano, A Rizzo
Applied surface science 186 (1-4), 216-220, 2002
452002
Design of Er3+-doped chalcogenide glass laser for MID-IR application
F Prudenzano, L Mescia, LA Allegretti, M De Sario, T Palmisano, ...
Journal of Non-Crystalline Solids 355 (18-21), 1145-1148, 2009
432009
Plasma-assisted pulsed laser deposition for the improvement of the film growth process
A De Giacomo, VA Shakhatov, GS Senesi, O De Pascale, F Prudenzano
Applied surface science 186 (1-4), 533-537, 2002
432002
A novel FDTD formulation based on fractional derivatives for dispersive Havriliak–Negami media
P Bia, D Caratelli, L Mescia, R Cicchetti, G Maione, F Prudenzano
Signal Processing 107, 312-318, 2015
422015
Simulation of mid-IR amplification in Er3+-doped chalcogenide microstructured optical fiber
F Prudenzano, L Mescia, L Allegretti, M De Sario, F Smektala, V Moizan, ...
Optical Materials 31 (9), 1292-1295, 2009
422009
Design of radiation-hardened rare-earth doped amplifiers through a coupled experiment/simulation approach
S Girard, L Mescia, M Vivona, A Laurent, Y Ouerdane, C Marcandella, ...
Journal of Lightwave Technology 31 (8), 1247-1254, 2013
412013
Theoretical study of cascade laser in erbium-doped chalcogenide glass fibers
F Prudenzano, L Mescia, L Allegretti, V Moizan, V Nazabal, F Smektala
Optical Materials 33 (2), 241-245, 2010
412010
Il sistema al momento non pu˛ eseguire l'operazione. Riprova pi¨ tardi.
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