CERN Accelerating science

CERN Document Server Pronađeno je 3 zapisa  Pretraživanje je potrajalo 0.66 sekundi 
1.
Study of low work function materials for hot cavity resonance ionization laser ion sources / Schwellnus, F (Mainz U., Inst. Phys.) ; Catherall, R (CERN) ; Crepieux, B (CERN) ; Fedosseev, V N (CERN) ; Marsh, B A (CERN) ; Mattolat, Ch (Mainz U., Inst. Phys.) ; Menna, M (CERN) ; Österdahl, F K (Royal Inst. Tech., Stockholm) ; Raeder, S (Mainz U., Inst. Phys.) ; Stora, T (CERN) et al.
The selectivity of a hot cavity resonance ionization laser ion source (RILIS) is most often limited by contributions from competing surface ionization of the hot walls of the ionization cavity. In this article we present investigations on the properties of designated high temperature, low work function materials regarding their performance and suitability as cavity material for RILIS. [...]
2009 - Published in : Nucl. Instrum. Methods Phys. Res., B 267 (2009) 1856-1851
2.
The ISOLDE RILIS pump laser upgrade and the LARIS Laboratory / Marsh, B A (CERN) ; Berg, L E (Royal Inst. Tech., Stockholm) ; Fedorov, D V (St. Petersburg, INP) ; Fedosseev, V N (CERN) ; Launila, O J (Royal Inst. Tech., Stockholm) ; Lindroos, M (CERN) ; Losito, R (CERN) ; Osterdahl, F K (Royal Inst. Tech., Stockholm) ; Pauchard, T (Royal Inst. Tech., Stockholm) ; Pohjalainen, I T (Jyväskylä U.) et al.
On account of its high efficiency, speed and unmatched selectivity, the Resonance Ionization Laser Ion Source (RILIS) is the preferred method for ionizing the nuclear reaction products at the ISOLDE on-line isotope separator facility [...]
CERN-EN-2010-001.
- 2010. - 11 p.
Full text
3.
ISOLDE RILIS : New beams, new facilities / Fedosseev, V (CERN) ; Berg, L E (Royal Inst. Tech., Stockholm) ; Lebas, N (CERN) ; Launila, O J (Royal Inst. Tech., Stockholm) ; Lindroos, M (CERN) ; Losito, R (CERN) ; Marsh, B A (CERN) ; Österdahl, F K (Royal Inst. Tech., Stockholm) ; Pauchard, T (Royal Inst. Tech., Stockholm) ; Tranströmer, G (Royal Inst. Tech., Stockholm) et al.
2008 - Published in : Nucl. Instrum. Methods Phys. Res., B 266 (2008) 4378-4382

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6 Osterdahl, F
3 Osterdahl, F K
6 Österdahl, F
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