Predictive capability of material screening by fast neutron activation analysis using laser-driven neutron sources
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H. Shiraga | M. Nakai | Y. Kuramitsu | H. Habara | Y. Arikawa | A. Morace | Z. Lan | Y. Abe | A. Yogo | S. Fujioka | T. Minami | A. Nakao | S. Asano | T. Mori | T. Wei
[1] K. Mima,et al. Laser-driven neutron source and nuclear resonance absorption imaging at ILE, Osaka University: review. , 2022, Applied Optics.
[2] T. Mocek,et al. 150 J DPSSL operating at 1.5 kW level. , 2021, Optics letters.
[3] K. Mima,et al. Single shot radiography by a bright source of laser-driven thermal neutrons and x-rays , 2021, Applied Physics Express.
[4] H. Yoshida,et al. 10 J operation of a conductive-cooled Yb:YAG active-mirror amplifier and prospects for 100 Hz operation. , 2021, Optics letters.
[5] M. Hossny,et al. Detecting shielded explosives by coupling prompt gamma neutron activation analysis and deep neural networks , 2020, Scientific Reports.
[6] Y. Sakaguchi,et al. A multichannel gated neutron detector with reduced afterpulse for low-yield neutron measurements in intense hard X-ray backgrounds. , 2018, The Review of scientific instruments.
[7] S. Matsubara,et al. Erratum: ``Efficient and Repetitive Neutron Generation by Double-Laser-Pulse Driven Photonuclear Reaction'' [Plasma Fusion Res. 13, 2404009 (2018)] , 2018 .
[8] Takuya Furuta,et al. Features of Particle and Heavy Ion Transport code System (PHITS) version 3.02 , 2018 .
[9] O. Willi,et al. Beamed neutron emission driven by laser accelerated light ions , 2015, 1507.04511.
[10] T. Ogawa,et al. Development of gamma de-excitation model for prediction of prompt gamma-rays and isomer production based on energy-dependent level structure treatment , 2014 .
[11] R. Freeman,et al. Fast neutron production from lithium converters and laser driven protons , 2013 .
[12] J. Frenje,et al. Production of neutrons up to 18 MeV in high-intensity, short-pulse laser matter interactions , 2011 .
[13] E. A. N. Fernandes,et al. Neutron activation analysis: A primary method of measurement , 2011 .
[14] K. Tanaka,et al. Laser generated neutron source for neutron resonance spectroscopy , 2010 .
[15] Y. Fujimoto,et al. 3.1-kJ chirped-pulse power amplification in the LFEX laser , 2008 .
[16] M. A. Rana,et al. Studies of CR-39 etch rates , 2002 .
[17] K. Randle. The applications of fast neutron activation analysis (FNAA) at Birmingham , 1987 .
[18] B. Jacrot,et al. REVIEW ARTICLE: The study of biological structures by neutron scattering from solution , 1976 .
[19] E.W. Haas,et al. Phosphorus doping of silicon by means of neutron irradiation , 1976, IEEE Transactions on Electron Devices.
[20] H. W. Lefevre. NEUTRONS FROM DEUTERON BREAKUP ON D, T, AND He$sup 4$ , 1962 .
[21] R. Serber,et al. The Production of High Energy Neutrons by Stripping , 1947 .
[22] J. Thomson. Bakerian Lecture:—Rays of positive electricity , 1913 .
[23] L. Roso. High repetition rate Petawatt lasers , 2018 .
[24] David Neely,et al. Laser-driven x-ray and neutron source development for industrial applications of plasma accelerators , 2015 .
[25] G. Tang,et al. Neutron Yields of Thick Be Target Bombarded with Low Energy Deuterons , 2014 .
[26] K. Mima,et al. Laser Driven Neutron Sources: Characteristics, Applications and Prospects , 2012 .