Zobrazeno 1 - 10
of 41
pro vyhledávání: '"Monica Spolaore"'
Autor:
Valentina Candela, Caterina Cavallini, Claudia Gasparrini, Lidia Armelao, Valeria Candeloro, Mauro Dalla Palma, Michele Fadone, Diego Marcuzzi, Mauro Pavei, Adriano Pepato, Basile Pouradier Duteil, Marzio Rancan, Andrea Rizzolo, Emanuele Sartori, Beatrice Segalini, Gianluigi Serianni, Monica Spolaore, Federico Zorzi, Piergiorgio Sonato
Publikováno v:
Materials, Vol 16, Iss 1, p 206 (2022)
SPIDER is the 100 keV full-size Negative Ion Source prototype of the ITER Neutral Beam Injector, operating at Consorzio RFX in Padova, Italy. The largest Negative Ion Source in the world, SPIDER generates an RF driven plasma from which Deuterium or H
Externí odkaz:
https://doaj.org/article/bc622bd935fc443b94b9ffbe29b17a79
Autor:
Mauro Dalla Palma, Monica Spolaore
Publikováno v:
IEEE sensors journal (Online) 21 (2021): 17898–17905. doi:10.1109/JSEN.2021.3085478
info:cnr-pdr/source/autori:Dalla Palma M.; Spolaore M./titolo:Modelling Fast Response Surface Thermocouple for Plasma Facing Components/doi:10.1109%2FJSEN.2021.3085478/rivista:IEEE sensors journal (Online)/anno:2021/pagina_da:17898/pagina_a:17905/intervallo_pagine:17898–17905/volume:21
info:cnr-pdr/source/autori:Dalla Palma M.; Spolaore M./titolo:Modelling Fast Response Surface Thermocouple for Plasma Facing Components/doi:10.1109%2FJSEN.2021.3085478/rivista:IEEE sensors journal (Online)/anno:2021/pagina_da:17898/pagina_a:17905/intervallo_pagine:17898–17905/volume:21
Surface eroding thermocouples are developed to measure temperatures and heat fluxes in plasma-facing components of fusion machines, especially in the divertor region. Sensor construction leads to a fast response (8ms) and robust design against heat l
Autor:
Candela, Valentina, Cavallini, Caterina, Gasparrini, Claudia, Armelao, Lidia, Candeloro, Valeria, DALLA PALMA, Mauro, Fadone, Michele, Diego, Marcuzzi, Mauro, Pavei, Adriano, Pepato, Basile Pouradier Duteil, Rancan, Marzio, Andrea, Rizzolo, Sartori, Emanuele, Segalini, Beatrice, Serianni, Gianluigi, Monica, Spolaore, Zorzi, Federico, Sonato, Piergiorgio
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______3657::45b447dcb56680e7c87a67ae543b27e3
https://hdl.handle.net/11577/3480258
https://hdl.handle.net/11577/3480258
Autor:
Carlo Poggi, Monica Spolaore, Matteo Brombin, Roberto Cavazzana, Michele Fadone, Roberto Pasqualotto, Antonio Pimazzoni, Nicola Pomaro, Emanuele Sartori, Gianluigi Serianni, Cesare Taliercio
Publikováno v:
29th IEEE Symposium on Fusion Engineering (SOFE-2021), Virtual Conference, 12-16 December 2021
info:cnr-pdr/source/autori:Poggi C.; Spolaore M.; Brombin M.; Cavazzana R.; Fadone M.; Pasqualotto R.; Pimazzoni A.; Pomaro N.; Sartori E.; Serianni G.; Taliercio C./congresso_nome:29th IEEE Symposium on Fusion Engineering (SOFE-2021)/congresso_luogo:Virtual Conference/congresso_data:12-16 December 2021/anno:2021/pagina_da:/pagina_a:/intervallo_pagine
info:cnr-pdr/source/autori:Poggi C.; Spolaore M.; Brombin M.; Cavazzana R.; Fadone M.; Pasqualotto R.; Pimazzoni A.; Pomaro N.; Sartori E.; Serianni G.; Taliercio C./congresso_nome:29th IEEE Symposium on Fusion Engineering (SOFE-2021)/congresso_luogo:Virtual Conference/congresso_data:12-16 December 2021/anno:2021/pagina_da:/pagina_a:/intervallo_pagine
The SPIDER experiment is the full size prototype of ITER heating neutral beam. It is equipped with two bi-dimensional arrays of Langmuir probes, covering the Plasma Grid (PG) surface and the Bias Plate (BP). These sets of diagnostics are routinely us
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::15db98db490a4d2b1369c25ab4ef3b77
https://hdl.handle.net/11577/3480063
https://hdl.handle.net/11577/3480063
Autor:
M. Tardocchi, G. Mico, Hitesh Patel, V. Antoni, A. Garbuglia, A. Masiello, Emanuele Sartori, L. Giacomelli, M. Brombin, F. Geli, A. De Lorenzi, Pierluigi Veltri, Piero Agostinetti, Gabriele Manduchi, S. Cristofaro, T. Maejima, D. Bruno, F. Paolucci, Marica Rebai, L. Cordaro, M. Zaupa, B. Pouradier-Duteil, S. Denizeau, M. Vignando, R. Lorenzini, Y. Yamashita, M. Dan, R. Casagrande, D. Lopez-Bruna, Federica Bonomo, R. Zagorski, M. Siragusa, M. Zuin, A. Rigoni-Garola, V. Candeloro, Daniel Gutierrez, H. Decamps, C. Taliercio, Loris Zanotto, F. Fellin, C. Rotti, M. Fadone, R. Delogu, M. Valente, M. Bigi, A. Canton, Gabriele Croci, R. Agnello, A. Pimazzoni, Bernd Heinemann, Emilio Martines, O. McCormack, M. Dalla Palma, Kazuhiro Watanabe, J. Graceffa, Nicola Pilan, Simone Peruzzo, Vanni Toigo, E. Oshita, A. Rizzolo, Elena Gaio, D. Aprile, M. Dremel, M. De Muri, B. Zaniol, R. Milazzo, C. Cavallini, Silvia Spagnolo, Gianluigi Serianni, N. Cruz, A. Sottocornola, Claudia Gasparrini, Hiroyuki Tobari, L. Trevisan, Namita Singh, P. Tomsic, T. Patton, F. Gasparini, F. Taccogna, Diego Marcuzzi, Atsushi Kojima, E. Spada, A. Muraro, Ursel Fantz, M. Pavei, A.K. Chakraborty, Francesco Gnesotto, A. Ferro, S. Konno, Tullio Bonicelli, Roberto Cavazzana, Giuseppe Chitarin, Nicolò Marconato, Giuseppe Gorini, Adriano Luchetta, A. Maistrello, A. Zamengo, C. Poggi, Marco D’Arienzo, N. Pomaro, F. Panin, A. Rousseau, Monica Spolaore, G. Berton, J.F. Moreno, W. Kraus, S. Dal Bello, M. Battistella, P. Tinti, G. Kouzmenko, D. Boilson, Piergiorgio Sonato, Marco Cavenago, C. Wimmer, M. J. Singh, M. Rutigliano, P. Jain, Pierluigi Zaccaria, M. Ugoletti, Marco Boldrin, D. Rigamonti, Katsuyoshi Tsumori, S. Manfrin, D. Wünderlich, Gwenael Fubiani, Muriel Simon, G. Martini, G. Agarici, Mieko Kashiwagi, D. Terranova, Marco Barbisan, S. Martini, M. Urbani, Luca Grando, Roberto Pasqualotto, J. Zacks, A. Tonti, M. Recchia, C. Labate, Matteo Agostini, P.B. Krastev, V. Pilard, G. Gomez, A. Shepherd
Publikováno v:
Fusion Engineering and Design
Fusion engineering and design 168 (2021): 112622-1–112622-10. doi:10.1016/j.fusengdes.2021.112622
info:cnr-pdr/source/autori:Toigo V.; Marcuzzi D.; Serianni G.; Boldrin M.; Chitarin G.; Dal Bello S.; Grando L.; Luchetta A.; Pasqualotto R.; Zaccaria P.; Zanotto L.; Agnello R.; Agostinetti P.; Agostini M.; Antoni V.; Aprile D.; Barbisan M.; Battistella M.; Berton G.; Bigi M.; Brombin M.; Candeloro V.; Canton A.; Casagrande R.; Cavallini C.; Cavazzana R.; Cordaro L.; Cruz N.; Dalla Palma M.; Dan M.; De Lorenzi A.; Delogu R.; De Muri M.; Denizeau S.; Fadone M.; Fellin F.; Ferro A.; Gaio E.; Gasparini F.; Gasparrini C.; Gnesotto F.; Jain P.; Krastev P.; Lopez-Bruna D.; Lorenzini R.; Maistrello A.; Manduchi G.; Manfrin S.; Marconato N.; Martines E.; Martini G.; Martini S.; Milazzo R.; Patton T.; Pavei M.; Peruzzo S.; Pilan N.; Pimazzoni A.; Poggi C.; Pomaro N.; Pouradier-Duteil B.; Recchia M.; Rigoni-Garola A.; Rizzolo A.; Sartori E.; Shepherd A.; Siragusa M.; Sonato P.; Sottocornola A.; Spada E.; Spagnolo S.; Spolaore M.; Taliercio C.; Terranova D.; Tinti P.; Tomsic P.; Trevisan L.; Ugoletti M.; Valente M.; Vignando M.; Zagorski R.; Zamengo A.; Zaniol B.; Zaupa M.; Zuin M.; Cavenago M.; Boilson D.; Rotti C.; Veltri P.; Decamps H.; Dremel M.; Graceffa J.; Geli F.; Urbani M.; Zacks J.; Bonicelli T.; Paolucci F.; Garbuglia A.; Agarici G.; Gomez G.; Gutierrez D.; Kouzmenko G.; Labate C.; Masiello A.; Mico G.; Moreno J-F.; Pilard V.; Rousseau A.; Simon M.; Kashiwagi M.; Tobari H.; Watanabe K.; Maejima T.; Kojima A.; Oshita E.; Yamashita Y.; Konno S.; Singh M.; Chakraborty A.; Patel H.; Singh N.; Fantz U.; Bonomo F.; Cristofaro S.; Heinemann B.; Kraus W.; Wimmer C.; Wunderlich D.; Fubiani G.; Tsumori K.; Croci G.; Gorini G.; McCormack O.; Muraro A.; Rebai M.; Tardocchi M.; Giacomelli L.; Rigamonti D.; Taccogna F.; Bruno D.; Rutigliano M.; D'Arienzo M.; Tonti A.; Panin F./titolo:On the road to ITER NBIs: SPIDER improvement after first operation and MITICA construction progress/doi:10.1016%2Fj.fusengdes.2021.112622/rivista:Fusion engineering and design/anno:2021/pagina_da:112622-1/pagina_a:112622-10/intervallo_pagine:112622-1–112622-10/volume:168
Fusion engineering and design 168 (2021): 112622-1–112622-10. doi:10.1016/j.fusengdes.2021.112622
info:cnr-pdr/source/autori:Toigo V.; Marcuzzi D.; Serianni G.; Boldrin M.; Chitarin G.; Dal Bello S.; Grando L.; Luchetta A.; Pasqualotto R.; Zaccaria P.; Zanotto L.; Agnello R.; Agostinetti P.; Agostini M.; Antoni V.; Aprile D.; Barbisan M.; Battistella M.; Berton G.; Bigi M.; Brombin M.; Candeloro V.; Canton A.; Casagrande R.; Cavallini C.; Cavazzana R.; Cordaro L.; Cruz N.; Dalla Palma M.; Dan M.; De Lorenzi A.; Delogu R.; De Muri M.; Denizeau S.; Fadone M.; Fellin F.; Ferro A.; Gaio E.; Gasparini F.; Gasparrini C.; Gnesotto F.; Jain P.; Krastev P.; Lopez-Bruna D.; Lorenzini R.; Maistrello A.; Manduchi G.; Manfrin S.; Marconato N.; Martines E.; Martini G.; Martini S.; Milazzo R.; Patton T.; Pavei M.; Peruzzo S.; Pilan N.; Pimazzoni A.; Poggi C.; Pomaro N.; Pouradier-Duteil B.; Recchia M.; Rigoni-Garola A.; Rizzolo A.; Sartori E.; Shepherd A.; Siragusa M.; Sonato P.; Sottocornola A.; Spada E.; Spagnolo S.; Spolaore M.; Taliercio C.; Terranova D.; Tinti P.; Tomsic P.; Trevisan L.; Ugoletti M.; Valente M.; Vignando M.; Zagorski R.; Zamengo A.; Zaniol B.; Zaupa M.; Zuin M.; Cavenago M.; Boilson D.; Rotti C.; Veltri P.; Decamps H.; Dremel M.; Graceffa J.; Geli F.; Urbani M.; Zacks J.; Bonicelli T.; Paolucci F.; Garbuglia A.; Agarici G.; Gomez G.; Gutierrez D.; Kouzmenko G.; Labate C.; Masiello A.; Mico G.; Moreno J-F.; Pilard V.; Rousseau A.; Simon M.; Kashiwagi M.; Tobari H.; Watanabe K.; Maejima T.; Kojima A.; Oshita E.; Yamashita Y.; Konno S.; Singh M.; Chakraborty A.; Patel H.; Singh N.; Fantz U.; Bonomo F.; Cristofaro S.; Heinemann B.; Kraus W.; Wimmer C.; Wunderlich D.; Fubiani G.; Tsumori K.; Croci G.; Gorini G.; McCormack O.; Muraro A.; Rebai M.; Tardocchi M.; Giacomelli L.; Rigamonti D.; Taccogna F.; Bruno D.; Rutigliano M.; D'Arienzo M.; Tonti A.; Panin F./titolo:On the road to ITER NBIs: SPIDER improvement after first operation and MITICA construction progress/doi:10.1016%2Fj.fusengdes.2021.112622/rivista:Fusion engineering and design/anno:2021/pagina_da:112622-1/pagina_a:112622-10/intervallo_pagine:112622-1–112622-10/volume:168
To reach fusion conditions and control the plasma configuration in ITER, the next step in tokamak fusion research, two neutral beam injectors (NBIs) will supply 16.5 MW each, by neutralizing accelerated negative hydrogen or deuterium ions. The requir
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::fc7cb9752dcfaf68da59af7da371505e
https://hdl.handle.net/21.11116/0000-0008-E4CE-F21.11116/0000-0008-EE7E-021.11116/0000-0008-E4CC-1
https://hdl.handle.net/21.11116/0000-0008-E4CE-F21.11116/0000-0008-EE7E-021.11116/0000-0008-E4CC-1
Autor:
L. Carraro, B. Momo, L. Cordaro, Roberto Cavazzana, M. Veranda, I. Predebon, Silvia Spagnolo, C. Hidalgo, P. Scarin, M. Zuin, Lionello Marrelli, Emilio Martines, B. Zaniol, N. Vianello, G. De Masi, M. E. Puiatti, Paolo Franz, Davide Abate, RFX-mod Team, Monica Spolaore, B. Ph. van Milligen, G. Grenfell, Matteo Agostini
Publikováno v:
Nuclear Fusion
Nuclear fusion 60 (2020): 126006-1–126006-21. doi:10.1088/1741-4326/abaf32
info:cnr-pdr/source/autori:Grenfell G.; Spolaore M.; Abate D.; Carraro L.; Marrelli L.; Predebon I.; Spagnolo S.; Veranda M.; Agostini M.; Van Milligen B.P.; Cavazzana R.; Cordaro L.; De Masi G.; Franz P.; Hidalgo C.; Martines E.; Momo B.; Puiatti M.E.; Scarin P.; Vianello N.; Zaniol B.; Zuin M./titolo:Turbulent filament properties in L and H-mode regime in the RFX-mod operating as a tokamak/doi:10.1088%2F1741-4326%2Fabaf32/rivista:Nuclear fusion/anno:2020/pagina_da:126006-1/pagina_a:126006-21/intervallo_pagine:126006-1–126006-21/volume:60
Nuclear fusion 60 (2020): 126006-1–126006-21. doi:10.1088/1741-4326/abaf32
info:cnr-pdr/source/autori:Grenfell G.; Spolaore M.; Abate D.; Carraro L.; Marrelli L.; Predebon I.; Spagnolo S.; Veranda M.; Agostini M.; Van Milligen B.P.; Cavazzana R.; Cordaro L.; De Masi G.; Franz P.; Hidalgo C.; Martines E.; Momo B.; Puiatti M.E.; Scarin P.; Vianello N.; Zaniol B.; Zuin M./titolo:Turbulent filament properties in L and H-mode regime in the RFX-mod operating as a tokamak/doi:10.1088%2F1741-4326%2Fabaf32/rivista:Nuclear fusion/anno:2020/pagina_da:126006-1/pagina_a:126006-21/intervallo_pagine:126006-1–126006-21/volume:60
The dynamics of turbulent filaments in L and ELM-free H-mode in the RFX-mod device operating as a tokamak is discussed in the present work. L-H transition and sustained H-mode have been achieved in the RFX-mod with the aid of an external electrode bi
Autor:
B. Momo, Monica Spolaore, M. Zuin, Heinz Isliker, L. Cordaro, Loukas Vlahos, P. Zanca, I. Predebon, Emilio Martines, Roberto Cavazzana, D. López-Bruna, Cristina Rea
Publikováno v:
Nuclear fusion 60 (2020): 056023-1–056023-15. doi:10.1088/1741-4326/ab7d4e
info:cnr-pdr/source/autori:Momo B.; Isliker H.; Cavazzana R.; Zuin M.; Cordaro L.; Lopez-Bruna D.; Martines E.; Predebon I.; Rea C.; Spolaore M.; Vlahos L.; Zanca P./titolo:The phenomenology of reconnection events in the reversed field pinch/doi:10.1088%2F1741-4326%2Fab7d4e/rivista:Nuclear fusion/anno:2020/pagina_da:056023-1/pagina_a:056023-15/intervallo_pagine:056023-1–056023-15/volume:60
info:cnr-pdr/source/autori:Momo B.; Isliker H.; Cavazzana R.; Zuin M.; Cordaro L.; Lopez-Bruna D.; Martines E.; Predebon I.; Rea C.; Spolaore M.; Vlahos L.; Zanca P./titolo:The phenomenology of reconnection events in the reversed field pinch/doi:10.1088%2F1741-4326%2Fab7d4e/rivista:Nuclear fusion/anno:2020/pagina_da:056023-1/pagina_a:056023-15/intervallo_pagine:056023-1–056023-15/volume:60
The phenomenology of reconnection events, associated to relaxations in high-current (similar to 1.5 MA) plasmas of the reversed-field pinch device RFX-mod, is shown. Each relaxation event can be described as a series of stages starting in the core an
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::18aa167d1c1e2a693f3e7942a62ca6c8
The impact of edge radial electric fields on edge-scrape-off layer coupling in the TJ-II stellarator
Autor:
Carlos B. da Silva, C. Hidalgo, T. Estrada, Monica Spolaore, G. Grenfell, B. Ph. van Milligen, U. Losada, B. Liu
Publikováno v:
Nuclear fusion (Online) 60 (2019): 014001-1–014001-6. doi:10.1088/1741-4326/ab538c
info:cnr-pdr/source/autori:Grenfell, G.; van Milligen, B. Ph; Losada, U.; Estrada, T.; Liu, B.; Silva, C.; Spolaore, M.; Hidalgo, C./titolo:The impact of edge radial electric fields on edge-scrape-off layer coupling in the TJ-II stellarator/doi:10.1088%2F1741-4326%2Fab538c/rivista:Nuclear fusion (Online)/anno:2019/pagina_da:014001-1/pagina_a:014001-6/intervallo_pagine:014001-1–014001-6/volume:60
Nuclear Fusion
info:cnr-pdr/source/autori:Grenfell, G.; van Milligen, B. Ph; Losada, U.; Estrada, T.; Liu, B.; Silva, C.; Spolaore, M.; Hidalgo, C./titolo:The impact of edge radial electric fields on edge-scrape-off layer coupling in the TJ-II stellarator/doi:10.1088%2F1741-4326%2Fab538c/rivista:Nuclear fusion (Online)/anno:2019/pagina_da:014001-1/pagina_a:014001-6/intervallo_pagine:014001-1–014001-6/volume:60
Nuclear Fusion
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::d16fc7862933330c7999611b3610aa7d
https://iopscience.iop.org/article/10.1088/1741-4326/ab538c/meta
https://iopscience.iop.org/article/10.1088/1741-4326/ab538c/meta
Autor:
Yu Gao, Tamara Andreeva, Christoph Biedermann, L. Rudischhauser, Kenneth Hammond, M. Endler, Kian Rahbarnia, Fabio Pisano, R. König, Aleix Puig Sitjes, G. Satheeswaran, Samuel Lazerson, Monica Spolaore, P. Drewelow, Tamás Szepesi, Adnan Ali, S. Klose, Carsten Killer, G. A. Wurden, G. Kocsis, Kai Jakob Brunner, Ulrich Neuner, U. Wenzel, M. W. Jakubowski, Dirk Nicolai, Barbara Cannas, Holger Niemann, J. Geiger, J. P. Knauer, Boyd Blackwell, Olaf Grulke, G. Schlisio, Matthias Mulsow, S. A. Bozhenkov, H. Thomsen, Jonathan Schilling, Matthias Otte
Publikováno v:
Nuclear Fusion
Nuclear fusion 59 (2019): 126004-1–126004-11. doi:10.1088/1741-4326/ab3df0
info:cnr-pdr/source/autori:Lazerson, Samuel A.; Gao, Yu; Hammond, Kenneth; Killer, Carsten; Schlisio, Georg; Otte, Matthias; Biedermann, Christoph; Spolaore, Monica; Bozhenkov, Sergey; Geiger, Joachim; Grulke, Olaf; Nicolai, Dirk; Satheeswaran, Guruparan; Niemann, Holger; Jakubowski, Marcin; Drewelow, Peter; Sitjes, Aleix Puig; Ali, Adnan; Cannas, Barbara; Pisano, Fabio; Koenig, Ralph; Wurden, Glen; Kocsis, Gabor; Szepesi, Tamas; Wenzel, Uwe; Mulsow, Matthias; Rahbarnia, Kian; Schilling, Jonathan; Neuner, Ulrich; Andreeva, Tamara; Thomsen, Henning; Knauer, Jens; Brunner, Kai Jakob; Blackwell, Boyd; Endler, Michael; Klose, Soren; Rudischhauser, Lukas/titolo:Tuning of the rotational transform in Wendelstein 7-X/doi:10.1088%2F1741-4326%2Fab3df0/rivista:Nuclear fusion/anno:2019/pagina_da:126004-1/pagina_a:126004-11/intervallo_pagine:126004-1–126004-11/volume:59
Nuclear fusion 59 (2019): 126004-1–126004-11. doi:10.1088/1741-4326/ab3df0
info:cnr-pdr/source/autori:Lazerson, Samuel A.; Gao, Yu; Hammond, Kenneth; Killer, Carsten; Schlisio, Georg; Otte, Matthias; Biedermann, Christoph; Spolaore, Monica; Bozhenkov, Sergey; Geiger, Joachim; Grulke, Olaf; Nicolai, Dirk; Satheeswaran, Guruparan; Niemann, Holger; Jakubowski, Marcin; Drewelow, Peter; Sitjes, Aleix Puig; Ali, Adnan; Cannas, Barbara; Pisano, Fabio; Koenig, Ralph; Wurden, Glen; Kocsis, Gabor; Szepesi, Tamas; Wenzel, Uwe; Mulsow, Matthias; Rahbarnia, Kian; Schilling, Jonathan; Neuner, Ulrich; Andreeva, Tamara; Thomsen, Henning; Knauer, Jens; Brunner, Kai Jakob; Blackwell, Boyd; Endler, Michael; Klose, Soren; Rudischhauser, Lukas/titolo:Tuning of the rotational transform in Wendelstein 7-X/doi:10.1088%2F1741-4326%2Fab3df0/rivista:Nuclear fusion/anno:2019/pagina_da:126004-1/pagina_a:126004-11/intervallo_pagine:126004-1–126004-11/volume:59
The control of rotational transform in Wendelstein 7-X (W7-X) is key to both the island divertor operation and safety of plasma facing components. The island divenor concept in W7-X relies on an edge flux surface with rotational transform of t = 1 re
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ca4291c33f29897bcae1669194396e11
https://hdl.handle.net/21.11116/0000-0004-B4BB-E21.11116/0000-0004-B4BD-C21.11116/0000-0004-B821-7
https://hdl.handle.net/21.11116/0000-0004-B4BB-E21.11116/0000-0004-B4BD-C21.11116/0000-0004-B821-7
Autor:
J. Juul Rasmussen, Nicola Vianello, S. Costea, Monica Spolaore, Roman Schrittwieser, Tomaz Gyergyek, Ronald Stärz, O. Vasilovici, B. S. Schneider, Jernej Kovacic, Volker Naulin, Codrina Ionita
Publikováno v:
The European physical journal. D, Atomic, molecular, optical and plasma physics (Online) 73 (2019): 1–16. doi:10.1140/epjd/e2019-90514-5
info:cnr-pdr/source/autori:Ionita C.; Schneider B.S.; Costea S.; Vasilovici O.; Kovacic J.; Gyergyek T.; Naulin V.; Rasmussen J.J.; Vianello N.; Spolaore M.; Starz R.; Schrittwieser R./titolo:Plasma potential probes for hot plasmas: A review and some news/doi:10.1140%2Fepjd%2Fe2019-90514-5/rivista:The European physical journal. D, Atomic, molecular, optical and plasma physics (Online)/anno:2019/pagina_da:1/pagina_a:16/intervallo_pagine:1–16/volume:73
Ionita, C, Schneider, B, Costea, S, Vasilovici, O, Kovačič, J, Gyergyek, T, Naulin, V, Rasmussen, J, Vianello, N, Spolaore, M, Stärz, R & Schrittwieser, R 2019, ' Plasma potential probes for hot plasmas: A review and some news ', European Physical Journal D, vol. 73, no. 4 . https://doi.org/10.1140/epjd/e2019-90514-5
info:cnr-pdr/source/autori:Ionita C.; Schneider B.S.; Costea S.; Vasilovici O.; Kovacic J.; Gyergyek T.; Naulin V.; Rasmussen J.J.; Vianello N.; Spolaore M.; Starz R.; Schrittwieser R./titolo:Plasma potential probes for hot plasmas: A review and some news/doi:10.1140%2Fepjd%2Fe2019-90514-5/rivista:The European physical journal. D, Atomic, molecular, optical and plasma physics (Online)/anno:2019/pagina_da:1/pagina_a:16/intervallo_pagine:1–16/volume:73
Ionita, C, Schneider, B, Costea, S, Vasilovici, O, Kovačič, J, Gyergyek, T, Naulin, V, Rasmussen, J, Vianello, N, Spolaore, M, Stärz, R & Schrittwieser, R 2019, ' Plasma potential probes for hot plasmas: A review and some news ', European Physical Journal D, vol. 73, no. 4 . https://doi.org/10.1140/epjd/e2019-90514-5
Plasma probes are well established diagnostic tools. They are not complicated, relatively easy to construct and to handle. The easiest and fastest accessible parameter is their floating potential. However, the floating potential of a cold probe is no
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::1f3b1b0f5320e10ec4176621d4eeed89