Metal ions were extracted from pulsed discharge plasmas operating in the transition region between vacuum spark (transient high voltage of kV) and vacuum arc (arc voltage ~;; 20 V). At a peak current of about 4 kA, and with a pulse duration of 8 ?s, we observed mean ion charges states of about 6 for several cathode materials. In the case of platinum, the highest average charge state was 6.74 with ions of charge states as high as 10 present. For gold we found traces of charge state 11, with the highest average charge state of 7.25. At currents higher than 5 kA, non-metallic contaminations started to dominate the ion beam, preventing further enhancement of the metal charge states
Ion energy of the beam formed by an ion source is proportional to extractor voltage and ion charge s...
Cathodic vacuum arc plasmas are known to contain multiply charged ions. 20 years after “Pressure Ion...
Cathodic arc plasmas are considered fully ionized and they contain multiply charged ions, yet, gase...
Metal ions were extracted from pulsed discharge plasmas operating in the transition region between v...
Short-pulse, high-current discharges in vacuum were investigated with the goal to maximize the ion c...
Vacuum arc ion sources, commonly also known as "Mevva" ionsources, are used to generate intense puls...
The paper reviews the results of vacuum arc experimental investigations made collaboratively by rese...
We consider the charge state distribution of ions produced in the metal vapor vacuum arc plasma disc...
Thallium arc plasma was investigated in a vacuum arc ionsource. As expected from previous considerat...
Vacuum arc ion sources, commonly also known as "Mevva" ion sources, are used to generate intense pu...
A vacuum arc ion source was modified allowing us to collections from arc plasma streaming through an...
The vacuum arc discharge is intensively explored for a long time. It acts as a source of multiply ch...
Cathodic arc plasmas are considered fully ionized and theycontain multiply charged ions, yet, gaseou...
Intense beams of metal ions can be formed from a vacuum arc ion source. Broadbeam extraction is conv...
We have studied the charge state distribution of the ion beam produced by the MEVVA (metal vapor vac...
Ion energy of the beam formed by an ion source is proportional to extractor voltage and ion charge s...
Cathodic vacuum arc plasmas are known to contain multiply charged ions. 20 years after “Pressure Ion...
Cathodic arc plasmas are considered fully ionized and they contain multiply charged ions, yet, gase...
Metal ions were extracted from pulsed discharge plasmas operating in the transition region between v...
Short-pulse, high-current discharges in vacuum were investigated with the goal to maximize the ion c...
Vacuum arc ion sources, commonly also known as "Mevva" ionsources, are used to generate intense puls...
The paper reviews the results of vacuum arc experimental investigations made collaboratively by rese...
We consider the charge state distribution of ions produced in the metal vapor vacuum arc plasma disc...
Thallium arc plasma was investigated in a vacuum arc ionsource. As expected from previous considerat...
Vacuum arc ion sources, commonly also known as "Mevva" ion sources, are used to generate intense pu...
A vacuum arc ion source was modified allowing us to collections from arc plasma streaming through an...
The vacuum arc discharge is intensively explored for a long time. It acts as a source of multiply ch...
Cathodic arc plasmas are considered fully ionized and theycontain multiply charged ions, yet, gaseou...
Intense beams of metal ions can be formed from a vacuum arc ion source. Broadbeam extraction is conv...
We have studied the charge state distribution of the ion beam produced by the MEVVA (metal vapor vac...
Ion energy of the beam formed by an ion source is proportional to extractor voltage and ion charge s...
Cathodic vacuum arc plasmas are known to contain multiply charged ions. 20 years after “Pressure Ion...
Cathodic arc plasmas are considered fully ionized and they contain multiply charged ions, yet, gase...