After installation of Mo liners in the source NIO1 (Negative Ion Optimization phase 1), hydrogen plasmas in a continuous regime operation (much longer than one hour) are routinely maintained, with more than 1 kW rf power and 0.5 Pa pressure, allowing a systematic investigation of pure H- volume effect, which requests a much lower acceleration voltage Vs 12 kV than future Cs operations at Vs 60 kV . A new extraction grid EG was installed (replacing some eroded insulators) and preliminary beam images are compared to old EG ones, discussing effects of different deflection field strength and need of intermediate values. Large improvements in beam diagnostics and the effect of installation of a cryogenic pump are also reported.

Extraction of many H-beamlets from ion source NIO1

Serianni G;Agostini M;Antoni V;Barbato P;Barbisan M;Brombin M;Cervaro V;Maniero M;Minelli P;Pasqualotto R;Recchia M;Romanato L;Rossetto F;Taccogna F;
2018

Abstract

After installation of Mo liners in the source NIO1 (Negative Ion Optimization phase 1), hydrogen plasmas in a continuous regime operation (much longer than one hour) are routinely maintained, with more than 1 kW rf power and 0.5 Pa pressure, allowing a systematic investigation of pure H- volume effect, which requests a much lower acceleration voltage Vs 12 kV than future Cs operations at Vs 60 kV . A new extraction grid EG was installed (replacing some eroded insulators) and preliminary beam images are compared to old EG ones, discussing effects of different deflection field strength and need of intermediate values. Large improvements in beam diagnostics and the effect of installation of a cryogenic pump are also reported.
2018
Istituto gas ionizzati - IGI - Sede Padova
Istituto di Nanotecnologia - NANOTEC
9780735417274
NIO1
Negative Ion Optimization 1
H-beamlets
hydrogen plasmas
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Descrizione: Extraction of many H_beamlets from ion source NIO1
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/350945
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