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1.
Radiat Prot Dosimetry ; 199(15-16): 1963-1967, 2023 Oct 11.
Artigo em Inglês | MEDLINE | ID: mdl-37819342

RESUMO

In the framework of the MUNES project, a prototype accelerator-based thermal neutron source was developed and installed at the Legnaro National Laboratories of INFN. The microdosimetric characterization of this radiation field was performed with a Tissue-Equivalent Proportional Counter with interchangeable cathode walls, either doped with 100 ppm of 10B or without boron doping. A suitable subtraction procedure allowed to discriminate the gamma, neutron and BNC dose components (Selva et al., 2022, Appl. Radiat. Isot. 182, 110144). The measured microdosimetric spectra can be weighted with a biological weighting function to estimate the Relative Biological Effectiveness of the radiation field, for the purpose of intercomparison between different thermal neutron sources. This work compares, therefore, the biological doses resulting from four different weighting functions applied to the same initial microdosimetric spectrum, discussing strengths and limitations of each of them.


Assuntos
Terapia por Captura de Nêutron de Boro , Doses de Radiação , Monitoramento de Radiação , Eficiência Biológica Relativa , Boro , Terapia por Captura de Nêutron de Boro/métodos , Raios gama , Nêutrons , Radiometria
2.
Rev Sci Instrum ; 91(1): 013328, 2020 Jan 01.
Artigo em Inglês | MEDLINE | ID: mdl-32012576

RESUMO

Low divergence negative ion beams are crucial for the development of ITER-like fusion reactors. SPIDER is the prototype beam source of the ITER heating neutral beam injector, and it recently started beam acceleration, up to a voltage of 30 kV. The main diagnostics used to measure beamlet divergence are a movable diagnostic calorimeter (STRIKE), which gives the thermal footprint of the beamlets; beam emission spectroscopy; and visible imaging. These systems do not allow a direct measurement of single beamlet phase-space distribution, which is useful for comparison with numerical simulations and to estimate accelerator performances. To this purpose, a movable Allison type emittance scanner for the SPIDER negative ion beam was developed and proposed for the installation on the STRIKE supporting structure. This paper describes the numerical analyses performed to dimension the mechanical and electrical components, such as the Faraday cup and the slits. An analytical approach based on the integration of an arbitrary phase-space distribution was adopted in order to simulate the device performances. The constraints due to the operation in a high heat load environment are discussed.

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