Publications
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Experimental investigation of ion cyclotron range of frequencies heating scenarios for ITER's half-field hydrogen phase performed in JET, Plasma Phys. Control. Fusion 754 (2012) 074008.
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Feedback control of the sawtooth period through real time control of the ion cyclotron resonance frequency, Nucl. Fusion 751 (2011) 073032.
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Fusion Energy-Production from a Deuterium-Tritium Plasma in the Jet Tokamak, Nuclear Fusion 232 (1992) 187-203.
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Minority and mode conversion heating in (He-3)-H JET plasmas, Plasma Phys. Control. Fusion 54 (2012) 074009.
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Mitigation of divertor heat loads by strike point sweeping in high power JET discharges, Phys. Scr. 2017 (2017) 014040.
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A model-based technique for integrated real-time profile control in the JET tokamak, Plasma Physics and Controlled Fusion 147 (2005) 155-183.
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Modelling of JET hybrid plasmas with emphasis on performance of combined ICRF and NBI heating, Nucl. Fusion 58 (2018) 106037.
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Objectives, physics requirements and conceptual design of an ECRH system for JET, Nucl. Fusion 651 (2011) 063033.
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Observations of rotation in JET plasmas with electron heating by ion cyclotron resonance heating, Plasma Phys. Control. Fusion 754 (2012) 074007.
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Optimizing ion-cyclotron resonance frequency heating for ITER: dedicated JET experiments (vol 53, 124019, 2011), Plasma Phys. Control. Fusion 54 (2012) 069601.
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Optimizing ion-cyclotron resonance frequency heating for ITER: dedicated JET experiments, Plasma Phys. Control. Fusion 1253 (2011) 4019.
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Real-time control of ELM and sawtooth frequencies: similarities and differences, Nucl. Fusion 56 (2016) 016008.
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Sawtooth control in JET with ITER relevant low field side resonance ion cyclotron resonance heating and ITER-like wall, Plasma Phys. Control. Fusion 157 (2015) 014033.
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