R Pasqualotto
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Explore the profile of R Pasqualotto including associated specialties, affiliations and a list of published articles.
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50
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5
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Recent Articles
1.
DIsa F, Fassina A, Giudicotti L, Soare S, Tojo H, Ohtani Y, et al.
Rev Sci Instrum
. 2024 Aug;
95(8).
PMID: 39166912
The mission of the JT-60SA project is to complement ITER's capabilities by addressing the fundamental physics and engineering challenges necessary to develop a practical and reliable fusion power plant. Diagnostics...
2.
Serianni G, Sartori E, Agnello R, Agostinetti P, Agostini M, Barbisan M, et al.
Rev Sci Instrum
. 2022 Sep;
93(8):081101.
PMID: 36050050
Giant negative ion sources for neutral beam injectors deliver huge negative ion currents, thanks to their multi-beamlet configuration. As the single-beamlet optics defines the transmission losses along the beamline, the...
3.
McCormack O, Giudicotti L, Fassina A, Pasqualotto R
Rev Sci Instrum
. 2021 Aug;
92(7):073001.
PMID: 34340429
A novel method for the path combination of two lasers with very similar wavelengths has been implemented to enable the evaluation of a dual-laser calibration Thomson scattering (TS) technique. The...
4.
Tojo H, Pasqualotto R, Fassina A, Giudicotti L, Sasao H, Homma H, et al.
Rev Sci Instrum
. 2021 Jul;
92(4):043556.
PMID: 34243487
An incoherent Thomson scattering diagnostic will be installed in the JT-60SA tokamak to measure electron temperature and electron density profiles. The target radial spatial resolution is 25 mm with 46...
5.
Ugoletti M, Agostini M, Barbisan M, Brombin M, Cavenago M, Delogu R, et al.
Rev Sci Instrum
. 2021 Jul;
92(4):043302.
PMID: 34243389
Beam tomography is a non-invasive diagnostic that allows us to reconstruct the beam emission profile by measuring the light emitted by the beam particles interacting with the background gas, along...
6.
Barbisan M, Pasqualotto R, Agnello R, Pilieci M, Serianni G, Taliercio C, et al.
Rev Sci Instrum
. 2021 Jul;
92(5):053507.
PMID: 34243229
The neutral beam injectors of the ITER experiment will rely on negative ion sources to produce 16.7 MW beams of H/D particles accelerated at 1 MeV. The prototype of these...
7.
Serianni G, Toigo V, Bigi M, Boldrin M, Chitarin G, Dal Bello S, et al.
Rev Sci Instrum
. 2020 Mar;
91(2):023510.
PMID: 32113382
The requirements of ITER neutral beam injectors (1 MeV, 40 A negative deuterium ion current for 1 h) have never been simultaneously attained; therefore, a dedicated Neutral Beam Test Facility...
8.
Feng S, Nocente M, Wunderlich D, Bonomo F, Croci G, Fantz U, et al.
Rev Sci Instrum
. 2018 Nov;
89(10):10I139.
PMID: 30399769
Along the route to the development of a neutral beam injector for ITER, the Padua based Source for Production of Ion of Deuterium Extracted from Rf plasma (SPIDER) and megavolt...
9.
Dalla Palma M, Sartori E, Zaupa M, Pasqualotto R
Rev Sci Instrum
. 2018 Nov;
89(10):10J111.
PMID: 30399762
Injection of high energy neutral beam particles will be used in the ITER experiment for plasma heating and current drive. In a ITER heating beam injector, a 40 MW electrostatically...
10.
Agnello R, Barbisan M, Furno I, Guittienne P, Howling A, Jacquier R, et al.
Rev Sci Instrum
. 2018 Nov;
89(10):103504.
PMID: 30399701
Cavity Ring Down Spectroscopy (CRDS) is used to measure the D absolute density produced in the helicon plasma reactor RAID (Resonant Antenna Ion Device) at the Swiss Plasma Center. The...