Nuclear Physics and Atomic Energy

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Nuclear Physics and Atomic Energy

  ISSN: 1818-331X (Print), 2074-0565 (Online)
  Publisher: Institute for Nuclear Research of the National Academy of Sciences of Ukraine
  Languages: Ukrainian, English, Russian
  Periodicity: 4 times per year

  Open access peer reviewed journal


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Nucl. Phys. At. Energy 2019, volume 20, issue 2, pages 187-195.
Section: Engineering and Methods of Experiment.
Received: 18.12.2018; Accepted: 17.04.2019; Published online: 27.08.2019.
PDF Full text (ua)
https://doi.org/10.15407/jnpae2019.02.187

Data acquisition system with flexible architecture for the research of nuclear reactions

A. P. Voiter*, M. I. Doronin, O. M. Kovalev, I. O. Maznyj

Institute for Nuclear Research, National Academy of Sciences of Ukraine, Kyiv, Ukraine

*Corresponding author. E-mail address: voiter@kinr.kiev.ua

Abstract: Data acquisition system with a flexible architecture for studying multiparameter nuclear reactions, based on the extensive use of the devices with programmable logic, is considered. The technical means of the system and its software are described.

Keywords: data acquisition systems, nuclear reactions, nuclear electronics, software.

References:

1. O.P. Vikhlyantsev et al. Hardware-software complex for measuring the energy and angular distributions of charged particles formed in nuclear reactions. Yadernaya Fizika i Inzhiniring 4 (2016) 326. (Rus) https://doi.org/10.1134/S2079562916040151

2. V.I. Grantsev et al. Modified experimental complex for investigation of nuclear reactions at the U-240 accelerator. Yaderna Fizyka ta Energetyka (Nucl. Phys. At. Energy) 5 (2004) 108. (Ukr) http://jnpae.kinr.kiev.ua/05.1/Articles_PDF/jnpae-2004-05-1-108.pdf

3. Yu.M. Pavlenko et al. The methods of multiparameter correlation measurements for the study of nuclear reactions. Yaderna Fizyka ta Energetyka (Nucl. Phys. At. Energy) 6 (2005) 151. (Ukr) http://jnpae.kinr.kiev.ua/06.2/Articles_PDF/jnpae-2005-06-2-151.pdf

4. S. Carboni et al. Particle identification using the ΔE-E technique and pulse shape discrimination with the silicon detectors of the FAZIA project. Nuclear Instruments and Methods in Physics Research A 664 (2012) 251. https://doi.org/10.1016/j.nima.2011.10.061

5. E. Piasecki et al. Project ICARE at HIL (Warsaw: Heavy Ion Laboratory, 2007) 38. https://inis.iaea.org/collection/NCLCollectionStore/_Public/38/068/38068159.pdf

6. L.E. Gavrilov. Fundamentals of Nuclear Electronics. Part 1. (Moskva: MEPhI, 2010) 164 p. (Rus)

7. Ron Jenkins et al. Quantitative X-Ray Spectrometry (New York, Marcel Dekker Inc, 1981) 586 p. Google books

8. A.P. Voiter et al. Eight-channel spectrometric ADC with programmable logic. Yaderna Fizyka ta Energetyka (Nucl. Phys. At. Energy) 17 (2016) 86. (Rus) https://doi.org/10.15407/jnpae2016.01.086

9. S. Zaitsev. Digital time-frequency measurement methods. Sovremennaya elektronika 6 (2009) 20. (Rus) Article