Influence of ion and acid etching on structural and magnetic resonance characteristics of the epitaxial iron garnet films
A.A. Syrov1, S.V. Tomilin1, E.Yu. Semuk1, S.V. Osmanov1
1Vernadskii Crimean Federal University, Simferopol, Russia
Email: anatoly199824@rambler.ru
The study presents experimental results of the investigation of the effects of post-growth treatment of the thin single-crystal films of the cation-replaced iron garnets on their structural and magnetic characteristics. It is shown that acid etching of the surface of the single-crystal garnets is usually inferior in the quality of surface treatment to the ion-plasma etching method. During investigating a morphology of the surface layer and spectra of ferromagnetic resonance in the epitaxial iron garnet film, it was shown that using orthophosphoric acid as an etchant resulted in reduction of surface roughness, but did not provide qualitative conservation of the magnetic characteristics as compared to the ion-plasma treatment method, which did not deteriorate the structure and did not destroy a crystal lattice of the iron garnets. Keywords: ion etching, acid etching, iron garnet, ferromagnetic resonance, edge profile, masking.
- V.G. Vishnevskii, R.M. Mikherskii, S.V. Dubinko. ZhTF, 72 (2), 96 (2002) (in Russian)
- N. Lugovskoy, V. Berzhansky, D. Glechik, A. Prokopov. J. Phys.: Conf. Ser., 1124, 5 051063 (2018). DOI: 10.1088/1742-6596/1124/5/051063
- P.M. Vetoshko, N.A. Gusev, D.A. Chepurnova, E.V. Samoilova, I.I. Sera, I.M. Sera, A.K. Zvezdin, A.A. Korotaeva, V.I. Belotelov. Tech. Phys. Lett., 42 (8), 860 (2016). DOI: 10.1134/S1063785016080289
- S.L. Vysotskii, M.E. Seleznev, Yu.V. Nikulin, A.V. Kozhevnikov, G.M. Amakhanov, A.G. Temiryazev. FTT, 66 (7), 1057 (2024) (in Russian). DOI: 10.61011/FTT.2024.07.58373.34HH
- A. Malozemov, Dzh. Slonzuski. Domennye stenki v materialakh s tsilindricheskimi magnitnymi domenami (Mir, M., 1982) (in Russian)
- S.V. Levyi, Yu.S. Agalidi, V.G. Vishnevskii. Izvestiya vuzov. Radioelektronika, 41 (8), 74 (1998) (in Russian)
- (U). Ozgur, Y. Alivov, H. Morko. J. Mater. Sci.: Mater. Electron., 20 (9), 789 (2009). DOI: 10.1007/s10854-009-9923-2
- R.M. Eguzhokova, A.I. Ivanova, E.M. Semenova. Fiziko-khimicheskiye aspekty izucheniya klasterov, nanostruktur i nanomaterialov, 11, 123 (2019) (in Russian)
- Yu.M. Bunkov. Phys. Usp., 53 (8), 848 (2010). DOI: 10.3367/UFNe.0180.201008m.0884
- A. Ustinov, V. Kochemasov, E. Khas'yanova. Elektronika, 8 (00148), 86 (2015) (in Russian)
- K.V. Bublikov, S.E. Sheshukova, E.N. Beginin, M. Tapajna, D. Gregusov, S.N. Krylov, A.I. Stognii, S.A. Korchagin, S.A. Nikitov, A.V. Sadovnikov. FTT, 65 (7), 1157 (2023) (in Russian). DOI: 10.21883/FTT.2023.07.55838.32H
- V.V. Tikhonov, V.A. Gubanov, A.V. Sadovnikov. Phys. Solid State, 63 (10), 1569 (2021). DOI: 10.1134/S1063783421090420
- S.N. Polulyakh, V.N. Berzhanskii, E.Yu. Semuk, V.I. Belotelov, P.M. Vetoshko, V.V. Popov, A.N. Shaposhnikov, A.G. Shumilov, A.I. Chernov. ZhETF, 159 (2), 307 (2021) (in Russian). DOI: 10.31857/S0044451021020103
- P.A. Popov, A.Y. Sharaevskaya, E.N. Beginin, A.V. Sadovnikov, A.I. Stognij, D.V. Kalyabin, S.A. Nikitov. J. Magn. Magn. Mater., 476, 423 (2019). DOI: 10.1016/j.jmmm.2018.12.008
- A.I. Chernov, M.A. Kozhaev, D.O. Ignatyeva, E.N. Beginin, A.V. Sadovnikov, A.A. Voronov, D. Karki, M. Levy, V.I. Belotelov. Nano Lett., 20, 5259 (2020). DOI: 10.1021/acs.nanolett.0c01528
- K.P. Belov. Redkozemel'nye magnetiki i ikh primenenie (Nauka, M., 1980) (in Russian)
- V.V. Randoshkin, A.Ya. Chervonenkis. Prikladnaya magnitooptika (Energoatomizdat, M., 1990) (in Russian)
- A.M. Balbashov. Elementy i ustroistva na tsilindricheskikh magnitnykh domenakh: spravochnik, pod red. N.N. Evtikhieva, B.N. Naumova (Radio i svyaz', M., 1987) (in Russian)
- A. Eshenfel'der. Fizika i tehnika tsilindricheskikh magnitnykh domenov (Mir, M., 1983). [Per. s angl. A.H. Eschenfelder. Magnetic bubble technology (Springer, 1981)] (in Russian)
- F.V. Lisovskii. Fizika tsilindrichekikh magnitnykh domenov (Sov. radio, M., 1979) (in Russian)
- S.P. Zimin, I.I. Amirov, V.V. Naumov, M.S. Tivanov, L.S. Lyashenko, O.V. Korolik, E. Abramof, P.H.O. Rappl. FTT, 66 (8), 1408 (2024) (in Russian). DOI: 10.61011/FTT.2024.08.58608.131
- M.V. Logunov, S.A. Nikitov, A.I. Stognii, S.S. Safonov, A.G. Temiryazev. Izv. RAN. Seriya fiz., 83 (7), 950 (2019) (in Russian). DOI: 10.1134/S0367676519070251
- S.I. Yushchuk. ZhTF, 69 (12), 62 (1999) (in Russian)
- V.I. Netsvetov, A.I. Kosse, V.V. Shchigolev, V.A. Khokhlov, Yu.V. Medvedev. Elektronnaya obrabotka materialov, 45 (4), 47 (2009) (in Russian)
- N.I. Tsidaeva, A.T. Nakusov, S.A. Khaimanov, A.K. Khubaev, L.M. Kubalova, W. Wang. Tech. Phys., 65 (2), 276 (2020). https://doi.org/10.1134/S1063784220020243
- W.A. Johnson, J.C. North, R. Wolfe. J. Appl. Phys., 44 (10), 4753 (1973). DOI: 10.1063/1.1662031
- V.G. Kostishin, A.T. Morchenko, D.N. Chitanov, V.M. Trukhan. Materialy elektronnoi tekhniki, 3, 29 (2012) (in Russian)
- A.A. Voronov, D.O. Ignatyeva, D. Karki, M.A. Kozhaev, M. Levy, V.I. Belotelov. Thirteenth International Congress on Artificial Materials for Novel Wave Phenomena, 447 (2019). DOI: 10.1109/MetaMaterials.2019.8900842
- G.F. Ivanovskii, V.I. Petrov. Ionno-plazmennaya obrabotka materialov (Radio i svyaz', M., 1986) (in Russian)
- A.G. Shumilov, A.A. Fedorenko, A.S. Nedviga, E.Yu. Semuk, I.A. Naukhatskii, V.N. Berzhanskii, A.N. Shaposhnikov, S.V. Tomilin. (Pat. RU 2 791 730 C1. Zayavl. 28.11.2022, opubl. 13.03.2023)
- O.A. Tomilina, A.A. Syrov, S.V. Tomilin, V.N. Berzhanskii. Poverkhnost', 10, 29 (2022) (in Russian). DOI: 10.31857/S1028096022100156
- P.M. Vetoshko, V.A. Skidanov, A.L. Stempkovskiy. Sensor Lett., 11 (1), 59 (2013). DOI: 10.1166/sl.2013.2768
- S.A. Yur'ev, S.I. Yushchuk. Pribory i tekhnika eksperimenta, 6, 102 (2013) (in Russian). DOI: 10.7868/S0032816213050236
- S.N. Ivanov, M.I. Bichurin, G.A. Semenov. Vestnik NovGU, 2 (73), 97 (2012) (in Russian)
- V.A. Skidanov, P.M. Vetoshko. Procedia Enineering, 5, 989 (2010). DOI: 10.1016/j.proeng.2010.09.275
- P.M. Vetoshko, A.K. Zvedin, V.A. Skidanov, I.I. Syvorotka, I.M. Syvorotka, V.I. Belotelov. Pis'ma v ZhTF, 41 (9), 103 (2015) (in Russian).
Подсчитывается количество просмотров абстрактов ("html" на диаграммах) и полных версий статей ("pdf"). Просмотры с одинаковых IP-адресов засчитываются, если происходят с интервалом не менее 2-х часов.
Дата начала обработки статистических данных - 27 января 2016 г.