Portable Neutron Generator Based on Laser-Plasma Ion Diode with Magnetic Isolation
Stepanov D.S.1, Kozlovsky K.I.1, Skripnik A.P.1, Shkolnikov E.Ya.1
1Moscow Engineering and Physics Institute, Moscow, Russia
Email: dsstepanov@mephi.ru
The article presents a new experimental portable pulsed neutron generator based on a laser-plasma ion diode with magnetic insulation and the results of the first experiments. The laser-plasma diode makes it possible to obtain large ion current pulses that generate high-intensity neutron radiation. The source of optical radiation was a pulsed neodymium-doped yttrium aluminum garnet laser with a wavelength of 1064 nm, a pulse energy of up to 0.7 J, and a duration of ~10 ns. The ion beam is accelerated by an Arkadiev-Marx pulsed voltage generator with a voltage amplitude of up to 250 kV, a duration of up to 1.5 μs, and an energy of up to 160 J. Neutrons were generated using the reaction d(d,n) 3He. A neutron yield of 2·106 neutron/pulse was obtained. Keywords: ion source, neutron pulse, pulsed voltage generator, YAG laser. DOI: 10.61011/TP.2023.06.56530.22-23
- E.P. Bogolyubov, V.I. Ryzhkov. Pribiry i tekhnika eksperimenta, 2, 160 (2004). (in Russian)
- V.D. Aleksandrov, E.P. Bogolubov, O.V. Bochkarev, L.A. Korytko, V.I. Nazarov, Yu.G. Polkanov, V.I. Ryzhkov, T.O. Khasaev. Appl. Radiat. Isot., 63 (5-6), 537 (2005). DOI: 10.1016/j.apradiso.2005.05.002
- D.N. Seleznev, T.V. Kulevoi, S.V. Plotnikov, A.V. Kozlov, G.N. Kropachev, S.V. Barabin, G.S. Rumyantsev, N.N. Schitov. Izvestiya vuz. Fizika. 59 (9-3), 277 (2016). (in Russian)
- Yu.V. Mikhailov, B.D. Lemeshko, I.A. Prokuratov. Fizika plazmy, 45 (4), 323 (2019) (in Russian). DOI: 10.1134/S036729213503007X
- K.I. Kozlovskii, Yu.P. Kozyrev, A.S. Tsybin, A.E. Shikanov. Sov. Phys. Tech. Phys., 25 (6), 694 (1980)
- A.E. Shikanov, E.D. Vovchenko, K.I. Kozlovskii. At. Energy, 119 (4), 258 (2016). DOI: 10.1007/s10512-016-0057-3
- D.S. Stepanov, A.P. Skripnik, K.I. Kozlovsky, E.Ya. Shkolnikov. Tez. dokl. VIII mezhd. konf. Lazernye, plazmennye issledovaniya i tekhnologii" (Moskva, Rissiya, 2022), s. 181. (in Russian)
- FGUP "BNIIA im. N.L. Dukhova", Pribor izmereniya vykhoda neytronov TPIVN61 (in Russian) (Electronic resource). URL:http://vniia.ru/production/neitronnie-gene- ratory/izmerenie-potoka-neitronov/tpivn61-tpivn111/tpivn61-i-tpivn111.php
- GOST R 52956-2008 Materialy magnitotverdye spechennye na osnive splava neodim-zhelezo-bor. Klassifikatsiya. Osnovnye parametry. M., 2008. 12 s. (in Russian)
- D.S. Stepanov, A.P. Skripnik, K.I. Kozlovsky, E.Ya. Shkolnikov. Atomnaya energiya, 133 (2023) (v pechati). (in Russian)
- E. Skladnik-Sadowska, K. Malinowski, M.J. Sadowski, J. Wolowski, M. Kubkowska, P. Gasior, M. Rosinski, M. Ladygina. Radiat. Eff. Defects Solids, 165 (6-10), 412 (2010). DOI: 10.1080/10420151003715341
- N.G. Basov, O.N. Krokhin, G.V. Sklizkov. Trudy FIAN, 52, 171 (1970). (in Russian)
- N.G. Basov, V.A. Boiko, V.A. Gribkov, S.M. Zakharov, O.N. Krokhin, G.V. Sklizkov. Nachal'naya stadiya dvizheniya lasernoy v rezhime gazodinamicheskogo razleta (Preprint N 38 FIAN im. P.N. Lebedeva, 1971) (in Russian)
- N.G. Basov, O.N. Krokhin, G.V. Sklizkov. Trudy FIAN, 76, 186 (1974). (in Russian)
- Yu.A. Bykovskiy, V.N. Nevolin. Lazernaya mass-spektroskopiya (Energoatomizdat, M., 1985) (in Russian)
- A.M. Borisov, E.S. Mashkova. Fizicheskie osnovy ionno-luchevykh tekhnologiy (Universitetskaya kniga, M., 2011) (in Russian)
- Nuclear Energy Agency. JANIS (Electronic resource). URL: https://oecd-nea.org/jcms/pl_39963/janis-downloads
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