Published August 2007 | Version v1
Report Open

The 2.5-MeV neutron time-of-flight spectrometer TOFOR for experiments at JET

Description

A time-of-flight (TOF) spectrometer for measurement of the 2.5-MeV neutron emission from fusion plasmas has been developed and put into use at the JET tokamak. It has been optimized for operation at high rates (TOFOR) for the purpose of performing advanced neutron emission spectroscopy (NES) diagnosis of deuterium plasmas with a focus on the fuel ion motional states for different auxiliary heating scenarios. This requires operation over a large dynamic range including high rates of >100 kHz with a maximum value of 0.5 MHz for the TOFOR design. This paper describes the design principles and their technical realization. The performance is illustrated with recent neutron time-of-flight spectra recorded for plasmas subjected to different heating scenarios. A data acquisition rate of 39 kHz has been achieved at about a tenth of the expected neutron yield limit of JET, giving a projected maximum of 400 kHz at peak JET plasma yield. This means that the count rate capability for NES diagnosis of D plasmas has been improved more than an order of magnitude. Another important performance factor is the spectrometer bandwidth where data have been acquired and analyzed successfully with a response function for neutrons over the energy range 1 to >5 MeV. The implications of instrumental advancement represented by TOFOR are discussed.

Files

38115807.pdf

Files (1.2 MB)

Name Size Download all
md5:ccaf7922c4ad13e5d61eb4948b5c985d
1.2 MB Preview Download

System files (73.3 kB)

Name Size Download all

Additional details

Publishing Information

Imprint Pagination
36 p.
ISSN
1401-6269
Report number
UU-NF--07-12

Optional Information

Notes
25 refs., 21 figs., 2 tabs.