A high resolution time of flight (TOF) system has been developed at LABEC, the 3 MV Tandem accelerator laboratory in Florence, in order to improve the sensitivity of AMS measurements on carbon samples with ultra-low concentration and also to measure other isotopes, such as 129I. The system can be employed to detect and identify residual interfering particles originated from the break-up of molecular isobars. The set-up has been specifically designed for low energy heavy ions: it consists of two identical time pick-off stations, each made up of a thin conductive foil and a Micro-Channel Plate (MCP) multiplier. The beamline is also equipped with a silicon detector, installed downstream the stop TOF station. In this paper the design of the new system and the implemented readout electronics are presented. The tests performed on the single time pick-off station are reported: they show that the maximum contribution to the timing resolution given by both the intrinsic MCP resolution and the electronics is ≤500 ps (FWHM). For these tests, single particle pulsed beams of 2-5 MeV protons and 10 MeV 12C3+ ions, to simulate typical AMS conditions, were used. The preliminary TOF and TOF-E (TOF-energy) measurements performed with carbon beams after the installation of the new system on the AMS beam line are also discussed. These measurements were performed using the foil-MCP as the start stage and a silicon detector as the stop stage. The spectra acquired with carbon ions suggest the presence of a small residual background from neighboring masses reaching the end of the beamline with the same energy as the rare isotope.

Palla, L., Castelli, L., Czelusniak, C., Fedi, M., Giuntini, L., Liccioli, L., et al. (2015). Preliminary measurements on the new TOF system installed at the AMS beamline of INFN-LABEC. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH. SECTION B, BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 361, 222-228 [10.1016/j.nimb.2015.04.020].

Preliminary measurements on the new TOF system installed at the AMS beamline of INFN-LABEC

MARTINI, MARCO;SIBILIA, EMANUELA
Penultimo
;
2015

Abstract

A high resolution time of flight (TOF) system has been developed at LABEC, the 3 MV Tandem accelerator laboratory in Florence, in order to improve the sensitivity of AMS measurements on carbon samples with ultra-low concentration and also to measure other isotopes, such as 129I. The system can be employed to detect and identify residual interfering particles originated from the break-up of molecular isobars. The set-up has been specifically designed for low energy heavy ions: it consists of two identical time pick-off stations, each made up of a thin conductive foil and a Micro-Channel Plate (MCP) multiplier. The beamline is also equipped with a silicon detector, installed downstream the stop TOF station. In this paper the design of the new system and the implemented readout electronics are presented. The tests performed on the single time pick-off station are reported: they show that the maximum contribution to the timing resolution given by both the intrinsic MCP resolution and the electronics is ≤500 ps (FWHM). For these tests, single particle pulsed beams of 2-5 MeV protons and 10 MeV 12C3+ ions, to simulate typical AMS conditions, were used. The preliminary TOF and TOF-E (TOF-energy) measurements performed with carbon beams after the installation of the new system on the AMS beam line are also discussed. These measurements were performed using the foil-MCP as the start stage and a silicon detector as the stop stage. The spectra acquired with carbon ions suggest the presence of a small residual background from neighboring masses reaching the end of the beamline with the same energy as the rare isotope.
Articolo in rivista - Articolo scientifico
14C; Accelerator Mass Spectrometry; Background suppression; Time of flight; Instrumentation; Nuclear and High Energy Physics
English
2015
361
222
228
none
Palla, L., Castelli, L., Czelusniak, C., Fedi, M., Giuntini, L., Liccioli, L., et al. (2015). Preliminary measurements on the new TOF system installed at the AMS beamline of INFN-LABEC. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH. SECTION B, BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 361, 222-228 [10.1016/j.nimb.2015.04.020].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/84357
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