International audienceA careful study of pulsed mode operation of the PHOENIX ECR ion source has clearly demonstrated the reality of an unexpected transient current peak, occurring at the very beginning of the plasma breakdown. This regime was named the Preglow, as an explicit reference to the Afterglow occurring at the microwave pulse end. After the transient Preglow peak, the plasma regime relaxes to the classical steady state one. Argon Preglow experiments performed at LPSC are presented. A theoretical model of ECR gas breakdown in a magnetic trap, developed at IAP, showing satisfactory agreement with the experimental results is suggested
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
International audienceAn electron–cyclotron–resonance ion source (ECRIS) operating in the afterglow ...
Various experiments have been performed on the 14.5 GHz ECR4 in order to improve the beam yield. The...
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 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 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 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 ...
Various experiments have been performed on the 14.5 GHz ECR4 in order to improve the beam yield. The...
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 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 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 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 ...
Various experiments have been performed on the 14.5 GHz ECR4 in order to improve the beam yield. The...