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1.
Trends in particle and nuclei identification techniques in nuclear physics experiments / Badalà, A (INFN, Catania) ; La Cognata, M (INFN, LNS) ; Nania, R (INFN, Bologna) ; Osipenko, M (INFN, Genoa) ; Piantelli, S (INFN, Florence) ; Turrisi, R (INFN, Padua) ; Barion, L (INFN, Ferrara) ; Capra, S (Milan U. ; INFN, Milan) ; Carbone, D (INFN, Catania) ; Carnesecchi, F (INFN, Bologna ; CERN) et al.
Particle identification techniques are fundamental tools in nuclear physics experiments. Discriminating particles or nuclei produced in nuclear interactions allows to better understand the underlying physics mechanisms. [...]
2022 - 88 p. - Published in : Nuovo Cimento, Riv.: 45 (2022) , no. 3, pp. 189-277
- Published in : Nuovo Cimento, Riv.: 45 (2022) , no. 3, pp. 277-279 Fulltext: PDF;
2.
MariX, an advanced MHz-class repetition rate X-ray source for linear regime time-resolved spectroscopy and photon scattering / Serafini, L (INFN, Milan ; LASA, Segrate) ; Bacci, A (INFN, Milan ; LASA, Segrate) ; Bellandi, A (DESY) ; Bertucci, M (INFN, Milan ; LASA, Segrate) ; Bolognesi, M (Milan U.) ; Bosotti, A (INFN, Milan ; LASA, Segrate) ; Broggi, F (INFN, Milan ; LASA, Segrate) ; Calandrino, R (Milan U., Inst. San Raffaele) ; Camera, F (Milan U. ; INFN, Milan ; LASA, Segrate) ; Canella, F (Milan U.) et al.
The need of a fs-scale pulsed, high repetition rate, X-ray source for time-resolved fine analysis of matter (spectroscopy and photon scattering) in the linear response regime is addressed by the conceptual design of a facility called MariX (Multi-disciplinary Advanced Research Infrastructure for the generation and application of X-rays) outperforming current X-ray sources for the declared scope. MariX is based on the original design of a two-pass two-way superconducting linear electron accelerator, equipped with an arc compressor, to be operated in CW mode (1 MHz). [...]
2019 - 6 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 930 (2019) 167-172

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