Abstract:
A complex setup for measuring the kinetics of high-voltage potentials of bulk dielectrics charging under irradiated of ions Ar$^{+}$ with medium energies has been created. Complex measurements of ion-emission characteristics, accumulated charges and surface charging potential showed effective charging to high positive potentials. The measured surface potentials is close in value to the potential of the ion gun. It is assumed that at the early stage of charging in the process of emission, sputtered ions dominate, and in the final stage of irradiation – backscattered.
Citation:
K. F. Minnebaev, E. I. Rau, A. A. Tatarintsev, “Charging of dielectrics under medium energy Ar$^{+}$ ions irradiation”, Fizika Tverdogo Tela, 61:6 (2019), 1090–1093; Phys. Solid State, 61:6 (2019), 1013–1016
\Bibitem{MinRauTat19}
\by K.~F.~Minnebaev, E.~I.~Rau, A.~A.~Tatarintsev
\paper Charging of dielectrics under medium energy Ar$^{+}$ ions irradiation
\jour Fizika Tverdogo Tela
\yr 2019
\vol 61
\issue 6
\pages 1090--1093
\mathnet{http://mi.mathnet.ru/ftt8785}
\crossref{https://doi.org/10.21883/FTT.2019.06.47683.356}
\elib{https://elibrary.ru/item.asp?id=39133772}
\transl
\jour Phys. Solid State
\yr 2019
\vol 61
\issue 6
\pages 1013--1016
\crossref{https://doi.org/10.1134/S1063783419060118}
Linking options:
https://www.mathnet.ru/eng/ftt8785
https://www.mathnet.ru/eng/ftt/v61/i6/p1090
This publication is cited in the following 12 articles:
D. Maldonado, A. Cantudo, D.V. Guseinov, M.N. Koryazhkina, E.V. Okulich, D.I. Tetelbaum, N.O. Bartev, N.G. Danchenko, V.A. Pikar, A.V. Teterevkov, F. Jiménez-Molinos, A.N. Mikhaylov, J.B. Roldán, “A statistical and modeling study on the effects of radiation on Au/Ta/ZrO2(Y)/Pt/Ti memristive devices”, Chaos, Solitons & Fractals, 191 (2025), 115909
I. A. Kanshin, “Increasing the Electrical Strength and Operation Stability of a Small-Sized Ion Accelerator”, Bull. Russ. Acad. Sci. Phys., 88:4 (2024), 607
Isak I. Beilis, “The Phenomenon of a Cathode Spot in an Electrical Arc: The Current Understanding of the Mechanism of Cathode Heating and Plasma Generation”, Plasma, 7:2 (2024), 329
A. A. Tatarintsev, N. A. Orlikovskiy, N. G. Orlikovskaya, K. E. Ozerova, Y. E. Shahova, “Method for Measuring the Dielectrics Charging Potential under Ion Irradiation Using Shifting the Bremsstrahlung Edge”, Tech. Phys., 69:4 (2024), 1052
E. Yu. Zykova, A. E. Ieshkin, K. F. Minnebaev, K. E. Ozerova, N. G. Orlikovskaia, E. I. Rau, A. A. Tatarintsev, “Scattering and ion emission from insulator films”, VMU, 2023, no. №2_2023, 2320302–1
E. Yu. Zykova, A. E. Ieshkin, K. F. Minnebaev, K. E. Ozerova, N. G. Orlikovskaia, E. I. Rau, A. A. Tatarintsev, “Ion Scattering and Ion Emission from Insulator Films”, Moscow Univ. Phys., 78:2 (2023), 166
K. E. Ozerova, A. A. Tatarintsev, E. I. Rau, K. F. Minnebaev, S. V. Zaitsev, “Differences in the Kinetic Characteristics of Charging Ferroelectrics and Dielectrics upon Ion Irradiation”, Bull. Russ. Acad. Sci. Phys., 85:8 (2021), 835
D. S. Chezganov, A. S. Nuraeva, E. A. Pashnina, A. P. Turygin, V. Ya Shur, “Forward domain growth on the non-polar cut of lithium niobate crystal during irradiation by focused ion beam”, Ferroelectrics, 574:1 (2021), 92
D. S. Chezganov, E. O. Vlasov, E. A. Pashnina, A. P. Turygin, A. S. Nuraeva, V. Ya. Shur, “Domain patterning of non-polar cut lithium niobate by focused ion beam”, Ferroelectrics, 559:1 (2020), 66
A.A. Tatarintsev, A.E. Ieshkin, D.S. Kireev, K.E. Ozerova(Markovets), “Electron-beam charging of sapphire preirradiated by Arn+ clusters”, Vacuum, 177 (2020), 109374
E.I. Rau, A.A. Tatarintsev, E.Yu. Zykova, K.E. Markovets (Ozerova), K.F. Minnebaev, “Charging of dielectrics under ion irradiation”, Vacuum, 177 (2020), 109373
A.E. Ieshkin, A.V. Nazarov, A.A. Tatarintsev, D.S. Kireev, A.D. Zavilgelsky, A.A. Shemukhin, V.S. Chernysh, “Energy distributions of the particles sputtered by gas cluster ions. Experiment and computer simulation”, Surface and Coatings Technology, 404 (2020), 126505