International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow mode allows to produce pulsed highly charged ion beams. We present a characterization of the first production of pulsed Ar17+ ions from an ECRIS using X-ray spectroscopy techniques. An ion current increase of a factor 3-4 compared to the continuous operating mode with a short rise time (< 100 µs) and a full width at half maximum of 500 µs has been obtained
International audienceAn increasing number of experiments in the field of low energy ion physics ( µ...
International audienceA careful study of pulsed mode operation of the PHOENIX ECR ion source has cle...
International audienceA careful study of pulsed mode operation of the PHOENIX ECR ion source has cle...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn increasing number of experiments in the field of low energy ion physics ( µ...
International audienceAn increasing number of experiments in the field of low energy ion physics ( µ...
International audienceAn increasing number of experiments in the field of low energy ion physics ( µ...
International audienceAn increasing number of experiments in the field of low energy ion physics ( µ...
International audienceAn increasing number of experiments in the field of low energy ion physics ( µ...
International audienceA careful study of pulsed mode operation of the PHOENIX ECR ion source has cle...
International audienceA careful study of pulsed mode operation of the PHOENIX ECR ion source has cle...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn increasing number of experiments in the field of low energy ion physics ( µ...
International audienceAn increasing number of experiments in the field of low energy ion physics ( µ...
International audienceAn increasing number of experiments in the field of low energy ion physics ( µ...
International audienceAn increasing number of experiments in the field of low energy ion physics ( µ...
International audienceAn increasing number of experiments in the field of low energy ion physics ( µ...
International audienceA careful study of pulsed mode operation of the PHOENIX ECR ion source has cle...
International audienceA careful study of pulsed mode operation of the PHOENIX ECR ion source has cle...