Publications (selected)
1. Pilan, Nicola & Agostini, M. & Fincato, Michele &
Fontana, Cristiano & Gobbo, R. & Lotto, L. & Marconato, Nicolò
& Mario, Issing & Pasqualotto, R. & Pesavento, Giancarlo &
Patton, Tommaso & Pino, F. & Spagnolo, S. & De Lorenzi, Antonio.
(2024). Development of X-Ray Collimators to Identify Sources of Radiation in
Devices Insulated by Large Vacuum Gaps. IEEE Transactions on Plasma Science.
PP. 1-7. 10.1109/TPS.2024.3386933.
2. D’Isa, F. & Fassina, A. & Giudicotti, L. & Soare,
S. & Tojo, H. & Ohtani, Yoshiaki & Akimitsu, M. & Crescenzio,
G. & Girardini, M. & Slemer, A. & Grossi, A. & Mazzarolo, E.
& Pasqualotto, R.. (2024). Collection optics of JT-60SA edge Thomson
scattering diagnostic. Review of Scientific Instruments. 95. 10.1063/5.0219396.
3. Mario, I. & Pimazzoni, A. & Sartori, E. &
Pouradier Duteil, Basile & Sheperd, A. & Denizeau, s & Casagrande,
Riccardo & Agnello, Riccardo & Agostini, M. & Aprile, Daniele &
Barbato, Paolo & Baseggio, L. & Battistella, M. & Berton, G. &
Boldrin, M. & Brombin, M. & Candeloro, V. & Carraro, M. &
Cinetto, P. & Serianni, G.. (2024). Optimizing the ITER NBI ion source by
dedicated RF driver test stand. Journal of Physics: Conference Series. 2743.
012041. 10.1088/1742-6596/2743/1/012041.
4. Segalini, B. & Candeloro, V. & Poggi, C. &
Berton, G. & Fasolo, Daniele & Franchin, L. & Laterza, B. &
Magagna, M. & Trevisan, Luca & Pasqualotto, R. & Serianni, G. &
Tollin, M. & Sartori, E.. (2024). Study and development of diagnostic
systems to characterise the extraction region in SPIDER. Journal of
Instrumentation. 19. C01013. 10.1088/1748-0221/19/01/C01013.
5. D'Isa, F.A. & Pasch, E. & Beurskens, M.N.A. &
Brunner, Kai & Fuchert, Golo & Pasqualotto, R. & Giudicotti, L.
& team, the. (2023). Analysis of dual laser Thomson scattering signals on
W7-X. Journal of Instrumentation. 18. C11025. 10.1088/1748-0221/18/11/C11025.
6. Mario, Issing & Zaniol, Barbara & Serianni, G. &
Sartori, E. & Bruno, D. & Pimazzoni, A. & Pasqualotto, R.. (2023).
Plasma emission monitored via optical emission spectroscopy during the Cs
conditioning at SPIDER. Journal of Instrumentation. 18. C09006.
10.1088/1748-0221/18/09/C09006.
7. Sartori, E. & Agnello, Riccardo & Agostini, M. &
Barbisan, Marco & Bigi, M. & Boldrin, M. & Brombin, M. &
Candeloro, V. & Casagrande, Riccardo & Dal Bello, S. & Dan, Mattia
& Duteil, B. & Fadone, M. & Grando, Lucília & Jain, Palak &
Maistrello, A. & Mario, Issing & Pasqualotto, R. & Pavei, M. &
Serianni, G.. (2023). Highlights of recent SPIDER results and improvements.
Journal of Instrumentation. 18. C09001. 10.1088/1748-0221/18/09/C09001.
8. Pasqualotto, R. & Sartori, E. & Agnello, Riccardo
& Brombin, M. & Candeloro, V. & Fadone, M. & Mario, Issing
& Patton, Tommaso & Poggi, C. & Segalini, B. & Serianni, G..
(2023). Improvement of SPIDER diagnostic systems. Fusion Engineering and
Design. 194. 113889. 10.1016/j.fusengdes.2023.113889.
9. Barbisan, Marco & Agnello, Riccardo & Baldini, L.
& Casati, G. & Fadone, M. & Pasqualotto, R. & Rizzolo, A. &
Sartori, E. & Serianni, G.. (2023). Characterization of cesium and H−/D−
density in the negative ion source SPIDER. Fusion Engineering and Design. 194.
113923. 10.1016/j.fusengdes.2023.113923.
10. Poggi, C. & Spolaore, M. & Barbisan, Marco &
Brombin, M. & Cavazzana, Roberto & Marconato, Nicolò & Pasqualotto,
R. & Pimazzoni, A. & Sartori, E. & Serianni, G.. (2023). Measure of
negative ion density in a large negative ion source using Langmuir probes.
Journal of Instrumentation. 18. C08013. 10.1088/1748-0221/18/08/C08013.
11. Patton, Tommaso & Shepherd, Alastair & Pouradier
Duteil, Basile & Rigoni Garola, Andrea & Brombin, Matteo &
Candeloro, Valeria & Manduchi, Gabriele & Pavei, Mauro &
Pasqualotto, R. & Pimazzoni, Antonio & Siragusa, Marco & Serianni,
Gianluigi & Sartori, Emanuele & Taliercio, Cesare & Barbato, Paolo
& Cervaro, Vannino & Ghiraldelli, Raffaele & Laterza, Bruno &
Rossetto, Federico. (2023). Design and Development of a Diagnostic System for a
Non-Intercepting Direct Measure of the SPIDER Ion Source Beamlet Current.
Sensors. 23. 6211. 10.3390/s23136211.
12. D’Isa, F.A. & Davis, Sam & Fassina, A. &
Giudicotti, Leonardo & Manfredi, M. & Montagnani, G. & Nigro, A.
& Palombi, L. & Ricciarini, S. & Tojo, H. & Verrecchia, M.
& Pasqualotto, R.. (2023). Design and characterization of the polychromators
for JT-60SA Thomson scattering systems. Fusion Engineering and Design. 192.
113591. 10.1016/j.fusengdes.2023.113591.
13. Pilan, Nicola & Agostini, Matteo & Fincato, Michele
& Fontana, Cristiano & Gobbo, Renato & Lotto, Luca & Marconato,
Nicolò & Mario, Isabella & Pasqualotto, R. & Pesavento, Giancarlo
& Patton, Tommaso & Pino, F. & Spagnolo, Silvia & De Lorenzi,
Antonio. (2023). Development of X-Ray collimators to identify sources of
radiation in devices insulated by large vacuum gaps. 516-520. 10.23919/ISDEIV55268.2023.10199298.
14. Marcuzzi, Diego & Toigo, V. & Boldrin, M. &
Chitarin, Giuseppe & Dal Bello, S. & Grando, Lucília & Luchetta,
Adriano & Pasqualotto, R. & Pavei, M. & Serianni, G. & Zanotto,
L. & Agnello, Riccardo & Agostinetti, P. & Agostini, M. &
Aprile, Daniele & Barbisan, Marco & Battistella, M. & Berton, G.
& Bigi, M. & Panin, F.. (2023). Lessons learned after three years of
SPIDER operation and the first MITICA integrated tests. Fusion Engineering and
Design. 191. 113590. 10.1016/j.fusengdes.2023.113590.
15. Candeloro, Valeria & Calciolari, Luca & Gnesotto,
Francesco & Sartori, Emanuele & Serianni, Gianluigi & Trevisan,
Lauro & Pasqualotto, R.. (2023). Design of an optimised movable
electrostatic diagnostic for the investigation of plasma properties in a large
negative ion source. Fusion Engineering and Design. 190. 113652.
10.1016/j.fusengdes.2023.113652.
16. Barbisan, Marco & Zaniol, Barbara & Pasqualotto, R.
& Serianni, G. & Ugoletti, Margherita. (2023). First results from beam
emission spectroscopy in SPIDER negative ion source. 10.48550/arXiv.2304.03036.
17. Agnello, Riccardo & Cavazzana, Roberto & Furno, I.
& Jacquier, R. & Pasqualotto, R. & Sartori, E. & Serianni, G..
(2023). Numerical and experimental investigations of a microwave interferometer
for the negative ion source SPIDER. Journal of Instrumentation. 18. C03009.
10.1088/1748-0221/18/03/C03009.
18. Serianni, G. & Sartori, E. & Agnello, Riccardo &
Agostini, M. & Barbisan, Marco & Bigi, M. & Boldrin, M. &
Brombin, Matteo & Candeloro, V. & Casagrande, Riccardo & Dal Bello,
S. & Dan, Mattia & Pouradier Duteil, Basile & Fadone, M. &
Grando, Lucília & Jain, Palak & Maistrello, A. & Mario, Issing
& Pasqualotto, R. & Toigo, V.. (2023). SPIDER, the Negative Ion Source
Prototype for ITER: Overview of Operations and Cesium Injection. IEEE
Transactions on Plasma Science. PP. 1-9. 10.1109/TPS.2022.3226239.
19. Agnello, Riccardo & Cavazzana, Roberto & Furno, I.
& Jacquier, R. & Pasqualotto, R. & Sartori, E. & Serianni, G..
(2023). Numerical and experimental investigations of a microwave interferometer
for the negative ion source SPIDER. 10.48550/arXiv.2302.14424.
20. Poggi, Carlo & Spolaore, Monica & Barbisan, Marco
& Brombin, Matteo & Cavazzana, Roberto & Marconato, Nicolò &
Pasqualotto, R. & Pimazzoni, Antonio & Sartori, Emanuele &
Serianni, Gianluigi. (2023). Measure of negative ion density in a large
negative ion source using Langmuir probes. 10.48550/arXiv.2302.12116.
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https://www.researchgate.net/profile/R-Pasqualotto