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Featured researches published by M. Recchia.


Review of Scientific Instruments | 2012

Development of a versatile multiaperture negative ion source

M. Cavenago; T. Kulevoy; S. Petrenko; G. Serianni; V. Antoni; M. Bigi; F. Fellin; M. Recchia; P. Veltri

A 60 kV ion source (9 beamlets of 15 mA each of H(-)) and plasma generators are being developed at Consorzio RFX and INFN-LNL, for their versatility in experimental campaigns and for training. Unlike most experimental sources, the design aimed at continuous operation. Magnetic configuration can achieve a minimum ∣B∣ trap, smoothly merged with the extraction filter. Modular design allows for quick substitution and upgrading of parts such as the extraction and postacceleration grids or the electrodes in contact with plasma. Experiments with a radio frequency plasma generator and Faraday cage inside the plasma are also described.


Review of Scientific Instruments | 2010

Design of a versatile multiaperture negative ion source

M. Cavenago; T. Kulevoy; S. Petrenko; V. Antoni; M. Bigi; E. Gazza; M. Recchia; G. Serianni; P. Veltri

Negative ion sources are a key component of the neutral beam injector to be installed in the International Thermonuclear Experimental Reactor. At present research and development activities address several important issues related to beam extraction, optics, and optimization. Together with the design of real size devices and the accumulation of atomic cross section databases, a relatively small negative ion source [130 mA of H(-) at 60 kV, named Negative Ion Optimization phase 1 (NIO1)] is under construction at Consorzio RFX to contribute to benchmark numerical simulation tools and to test components, such as emittance scanners, beam dumps, and cesium ovens. NIO1 design, magnet configuration, and rf coupling simulations are described.


SECOND INTERNATIONAL SYMPOSIUM ON NEGATIVE IONS, BEAMS AND SOURCES | 2011

Status of NIO1 construction

M. Cavenago; E. Fagotti; M. Poggi; G. Serianni; V. Antoni; M. Bigi; F. Fellin; E. Gazza; M. Recchia; P. Veltri; S. Petrenko; T. Kulevoy

The NIO1 (Negative Ion Optimization phase 1) project consists of a multiaperture negative ion source mounted on a 60 kV accelerating column; up to 9 beamlets (15 mA H− each one) arranged in 3×3 matrix with 14 mm spacing can be extracted. The moderate size and the modular concept make some relative rotation of the source magnetic filter and the electrodes possible, so that the effect of crossed and aligned field can be easily compared. Other goals of source experimental program are emittance (and beam profile) measurement at several distances (for simulation code validation), testing of diagnostic components and of radiofrequency coupling. A full set of construction drawing was completed; also the Fast Emittance Scanner (FES) and its vacuum chambers were built (four mounting positions are reserved to FES). Some low power rf matching boxes were developed for a test plasma, approximately half the source size. A cesium oven compatible with NIO1 is being also developed; by using some industrial standard 100 W ...


symposium on fusion technology | 2009

The ITER full size plasma source device design

P. Sonato; P. Agostinetti; G. Anaclerio; V. Antoni; O. Barana; M. Bigi; M. Boldrin; M. Cavenago; S. Dal Bello; M. Dalla Palma; A. Daniele; M. D’Arienzo; A. De Lorenzi; Alberto Ferro; A. Fiorentin; E. Gaio; E. Gazza; L. Grando; F. Fantini; F. Fellin; A. Luchetta; G. Manduchi; F. Milani; D. Marcuzzi; L. Novello; R. Pasqualotto; M. Pavei; R. Pengo; S. Peruzzo; A. Pesce


Fusion Engineering and Design | 2011

Overview on the power supply systems for plasma instabilities control

V. Toigo; E. Gaio; R. Piovan; Marco Barp; M. Bigi; Alberto Ferro; Claudio Finotti; L. Novello; M. Recchia; A. Zamengo; L. Zanotto


Fusion Engineering and Design | 2011

The Transmission Line for the SPIDER experiment

M. Boldrin; Antonio De Lorenzi; M. Recchia; V. Toigo; T. Bonicelli; Muriel Simon


Nuclear Fusion | 2017

The ITER Neutral Beam Test Facility towards SPIDER operation

V. Toigo; S. Dal Bello; E. Gaio; A. Luchetta; R. Pasqualotto; P. Zaccaria; M. Bigi; G. Chitarin; D. Marcuzzi; N. Pomaro; G. Serianni; P. Agostinetti; M. Agostini; V. Antoni; Daniele Aprile; C. Baltador; M. Barbisan; M. Battistella; M. Boldrin; M. Brombin; M. Dalla Palma; A. De Lorenzi; R. Delogu; M. De Muri; Francesco Fellin; Alberto Ferro; G. Gambetta; L. Grando; P. Jain; A. Maistrello


Fusion Engineering and Design | 2011

Conceptual design and circuit analyses for the power supplies of the NIO1 experiment

M. Recchia; M. Bigi; M. Cavenago


Fusion Engineering and Design | 2011

Enhancement of the power supply systems in RFX-mod towards 2 MA plasma current

L. Novello; A. Zamengo; Alberto Ferro; L. Zanotto; Marco Barp; R. Cavazzana; Claudio Finotti; M. Recchia; E. Gaio


Nuclear Fusion | 2017

H-mode achievement and edge features in RFX-mod tokamak operation

M. Spolaore; R. Cavazzana; L. Marrelli; L. Carraro; P. Franz; S. Spagnolo; B. Zaniol; M. Zuin; Luigi Cordaro; S. Dal Bello; G. De Masi; Alberto Ferro; C. Finotti; L. Grando; G. Grenfell; P. Innocente; O. Kudlacek; G. Marchiori; E. Martines; B. Momo; R. Paccagnella; P. Piovesan; C. Piron; M. E. Puiatti; M. Recchia; P. Scarin; C. Taliercio; N. Vianello; L. Zanotto

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M. Cavenago

Istituto Nazionale di Fisica Nucleare

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V. Antoni

European Atomic Energy Community

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