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zadetkov: 137
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  • Numerical Design of RF Ante... Numerical Design of RF Antennas for Ion Cyclotron Resonance Heating in ECRIS Environment
    Mauro, G. S.; Torrisi, G.; Pidatella, A. ... Journal of physics. Conference series, 04/2022, Letnik: 2244, Številka: 1
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    Abstract In this paper we present the numerical design and simulation of RF antennas to be employed in Ion Cyclotron Resonance Heating (ICRH) systems working in ECRIS environment. A 3D full-wave ...
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  • PANDORA, a new facility for... PANDORA, a new facility for interdisciplinary in-plasma physics
    Mascali, D.; Musumarra, A.; Leone, F. ... The European physical journal. A, Hadrons and nuclei, 07/2017, Letnik: 53, Številka: 7
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    . PANDORA, Plasmas for Astrophysics, Nuclear Decays Observation and Radiation for Archaeometry, is planned as a new facility based on a state-of-the-art plasma trap confining energetic plasma for ...
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  • Novel modelling of metal at... Novel modelling of metal atoms diffusion and ion transport in ECR plasma relevant to ion sources and in-plasma nuclear physics studies
    Pidatella, A; Galatà, A; Mishra, B ... Journal of physics. Conference series, 05/2024, Letnik: 2743, Številka: 1
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    Abstract Metals can be injected into electron cyclotron resonance ion sources (ECRIS) via different techniques, among which resistive ovens are used to vaporize neutral materials, later captured by ...
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  • Design of a novel ECR ion t... Design of a novel ECR ion trap facility for nuclear physics and fundamental plasma processes studies
    Naselli, E.; Santonocito, D.; Biri, S. ... Journal of physics. Conference series, 05/2024, Letnik: 2743, Številka: 1
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    Abstract An innovative ECR ion trap facility, called PANDORA (Plasma for Astrophysics, Nuclear Decay Observation and Radiation for Archaeometry), was designed for fundamental plasma processes and ...
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  • First numerical evidence of... First numerical evidence of the two-close frequency heating effect on electron cyclotron resonance ion sources
    Galatà, A; Biri, S; Finocchiaro, G ... Journal of physics. Conference series, 05/2024, Letnik: 2743, Številka: 1
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    Abstract The two-close frequency heating (TCFH) is a new implementation of the well-known two frequency heating. In TCFH, the two frequencies differ around 200-300 MHz each other in order to ...
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zadetkov: 137

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