Application of Doppler backscattering diagnostics for studying edge localized modes on the Globus-M2 tokamak
Tokarev A. Yu.
1, Yashin A. Yu.
1,2, Zhiltsov N. S.
1,2, Kurskiev G. S.
2, Minaev V. B.
2, Petrov Yu. V.
2, Ponomarenko A. M.
1, Sakharov N. V.
21Peter the Great Saint-Petersburg Polytechnic University, St. Petersburg, Russia
2Ioffe Institute, St. Petersburg, Russia
Email: tokarev_ayu@spbstu.ru, alex_yashin@list.ru, nisovru@gmail.com, gleb.kurskiev@gmail.com, vladimir.minaev@mail.ioffe.ru, yu.petrov@mail.ioffe.ru, annap2000dreeonn@gmail.com, nikolay.sakharov@mail.ioffe.ru
In the high confinement mode with an edge transport barrier (H-mode), large pressure gradients at the plasma periphery are observed, which leads to the appearance of edge localized modes (ELMs). On the spherical tokamak Globus-M2 ELMs can be divided into 2 types: synchronized with sawtooth oscillations in the center of the plasma and independent of them or desynchronized. In this paper, we present a study of synchronized edge localized modes by Doppler backscattering diagnostics. It is shown that the turbulence level changes dramatically during ELMs. In addition, the radial electric field profiles were constructed for synchronized edge localized modes of different amplitude. Keywords: Tokamak, Doppler backscattering, edge localized modes.
- F. Wagner, G. Becker, K. Behringer, D. Campbell, A. Eberhagen, W. Engelhardt, G. Fussmann, O. Gehre, J. Gernhardt, G. v. Gierke, G. Haas, M. Huang, F. Karger, M. Keilhacker, O. Kluber, M. Kornherr, K. Lackner, G. Lisitano, G.G. Lister, H.M. Mayer, D. Meisel, E.R. Muller, H. Murmann, H. Niedermeyer, W. Poschenrieder, H. Rapp, H. Rohr, F. Schneider, G. Siller, E. Speth, A. Stubler, K.H. Steuer, G. Venus, O. Vollmer, Z. Yu, Phys. Rev. Lett., 49 (19), 1408 (1982). DOI: 10.1103/PhysRevLett.49.1408
- E.J. Doyle, W.A. Houlberg, Y. Kamada, V. Mukhovatov, T.H. Osborne, A. Polevoi, G. Bateman, J.W. Connor, J.G. Cordey, T. Fujita, X. Garbet, T.S. Hahm, L.D. Horton, A.E. Hubbard, F. Imbeaux, F. Jenko, J.E. Kinsey, Y. Kishimoto, J. Li, T.C. Luce, Y. Martin, M. Ossipenko, V. Parail, A. Peeters, T.L. Rhodes, J.E. Rice, C.M. Roach, V. Rozhansky, F. Ryter, G. Saibene, R. Sartori, A.C.C. Sips, J.A. Snipes, M. Sugihara, E.J. Synakowski, H. Takenaga, T. Takizuka, K. Thomsen, M.R. Wade, H.R. Wilson, ITPA Transport Physics Topical Group, ITPA Confinement Database and Modelling Topical Group and ITPA Pedestal and Edge Topical Group, Nucl. Fusion, 47 (6), S18 (2007). DOI: 10.1088/0029-5515/47/6/S02
- T.C. Hender, J.C. Wesley, J. Bialek, A. Bondeson, A.H. Boozer, R.J. Buttery, A. Garofalo, T.P. Goodman, R.S. Granetz, Y. Gribov, O. Gruber, M. Gryaznevich, G. Giruzzi, S. Gunter, N. Hayashi, P. Helander, C.C. Hegna, D.F. Howell, D.A. Humphreys, G.T.A. Huysmans, A.W. Hyatt, A. Isayama, S.C. Jardin, Y. Kawano, A. Kellman, C. Kessel, H.R. Koslowski, R.J. La Haye, E. Lazzaro, Y.Q. Liu, V. Lukash, J. Manickam, S. Medvedev, V. Mertens, S.V. Mirnov, Y. Nakamura, G. Navratil, M. Okabayashi, T. Ozeki, R. Paccagnella, G. Pautasso, F. Porcelli, V.D. Pustovitov, V. Riccardo, M. Sato, O. Sauter, M.J. Schaffer, M. Shimada, P. Sonato, E.J. Strait, M. Sugihara, M. Takechi, A.D. Turnbull, E. Westerhof, D.G. Whyte, R. Yoshino, H. Zohm and the ITPA MHD, Disruption and Magnetic Control Topical Group, Nucl. Fusion, 47 (6), S128 (2007). DOI: 10.1088/0029-5515/47/6/S03
- J.W. Connor, Plasma. Phys. Control. Fusion, 40 (5), 531 (1998). DOI: 10.1088/0741-3335/40/5/002
- J.W. Connor, A. Kirk, H.R. Wilson, AIP Conf. Proc., 1013 (1), 174 (2008). DOI: 10.1063/1.2939030
- P.B. Snyder, H.R. Wilson, J.R. Ferron, L.L. Lao, A.W. Leonard, D. Mossessian, M. Murakami, T.H. Osborne, A.D. Turnbull, X.Q. Xu, Nucl. Fusion, 44 (2), 320 (2004). DOI: 10.1088/0029-5515/44/2/014
- A.W. Leonard, Phys. Plasmas, 21 (9), 090501 (2014). DOI: 10.1063/1.4894742
- V.V. Solokha, G.S. Kurskiev, A.Yu. Yashin, I.M. Balachenkov, V.I. Varfolomeev, A.V. Voronin, V.K. Gusev, V.Yu. Goryainov, V.V. Dyachenko, N.S. Zhiltsov, E.O. Kiselev, V.B. Minaev, A.N. Novokhatsky, Yu.V. Petrov, A.M. Ponomarenko, N.V. Sakharov, A.Yu. Telnova, E.E. Tkachenko, V.A. Tokarev, S.Yu. Tolstyakov, E.A. Tukhmeneva, N.A. Khromov, P.B. Shchegolev, Plasma Phys. Rep., 49 (4), 419 (2023). DOI: 10.1134/S1063780X23600184
- V.V. Bulanin, G.S. Kurskiev, V.V. Solokha, A.Yu. Yashin, N.S. Zhiltsov, Plasma Phys. Control. Fusion, 63 (12), 122001 (2021). DOI: 10.1088/1361-6587/ac36a4
- A.Y. Yashin, V.V. Bulanin, V.K. Gusev, V.B. Minaev, A.V. Petrov, Y.V. Petrov, A.M. Ponomarenko, V.I. Varfolomeev, JINST, 17 (1), C01023 (2022). DOI: 10.1088/1748-0221/17/01/C01023
- A. Ponomarenko, V. Gusev, E. Kiselev, G. Kurskiev, V. Minaev, A. Petrov, Y. Petrov, N. Sakharov, V. Solokha, N. Teplova, P. Shchegolev, A. Yashin, N. Zhiltsov, Nucl. Fusion, 64 (2), 022001 (2024). DOI: 10.1088/1741-4326/ad0ead
- A.Yu. Tokarev, A.Yu. Yashin, A.M. Ponomarenko, V.K. Gusev, N.S. Zhiltsov, G.S. Kurskiev, V.B. Minaev, Yu.V. Petrov, N.V. Sakharov, V.V. Solokha, V.A. Velizhanin, Plasma Phys. Rep., 50 (5), 541 (2024). DOI: 10.1134/S1063780X24600518
- G.S. Kurskiev, N.V. Sakharov, V.K. Gusev, V.B. Minaev, I.V. Miroshnikov, Yu.V. Petrov, A.Yu. Telnova, N.N. Bakharev, E.O. Kiselev, N.S. Zhiltsov, P.B. Shchegolev, I.M. Balachenkov, V.I. Varfolomeev, A.V. Voronin, V.Yu. Goryainov, V.V. Dyachenko, E.G. Zhilin, M.V. Iliasova, A.A. Kavin, A.N. Konovalov, S.V. Krikunov, K.M. Lobanov, A.D. Melnik, A.B. Mineev, A.N. Novokhatsky, M.I. Patrov, A.V. Petrov, A.M. Ponomarenko, O.M. Skrekel', V.A. Solovei, V.V. Solokha, E.E. Tkachenko, V.A. Tokarev, S.Yu. Tolstyakov, E.A. Tukhmeneva, E.M. Khilkevitch, N.A. Khromov, F.V. Chernyshev, A.E. Shevelev, K.D. Shulyat'ev, A.Yu. Yashin, Plasma Phys. Rep., 49 (4), 403 (2023). DOI: 10.1134/S1063780X23600214
- G.D. Conway, J. Schirmer, S. Klenge, W. Suttrop, E. Holzhauer, the ASDEX Upgrade Team, Plasma Phys. Control. Fusion, 46 (6), 951 (2004). DOI: 10.1088/0741-3335/46/6/003
- C. Silva, E.R. Solano, J.C. Hillesheim, E. Delabie, G. Birkenmeier, L. Gil, C. Giroud, R.B. Morales, D. Nina and JET Contributors, Nucl. Fusion, 62 (12), 126057 (2022). DOI: 10.1088/1741-4326/ac97f4
- X. Feng, A.D. Liu, C. Zhou, M.Y. Wang, J. Zhang, Z.Y. Liu, Y. Liu, T.F. Zhou, S.B. Zhang, D.F. Kong, L.Q. Hu, J.X. Ji, H.R. Fan, H. Li, T. Lan, J.L. Xie, W.Z. Mao, Z.X. Liu, W.X. Ding, G. Zhuang, W.D. Liu, Rev. Sci. Instrum., 90 (2), 024704 (2019). DOI: 10.1063/1.5075615
- Z. Shi, W. Zhong, M. Jiang, Z. Yang, B. Zhang, P. Shi, W. Chen, J. Wen, C. Chen, B. Fu, Z. Liu, X. Ding, Q. Yang, X. Duan, Rev. Sci. Instrum., 87 (11), 113501 (2016). DOI: 10.1063/1.4966680
- V.V. Bulanin, A.Y. Yashin, A.V. Petrov, V.K. Gusev, V.B. Minaev, M.I. Patrov, Y.V. Petrov, D.V. Prisiazhniuk, V.I. Varfolomeev, Rev. Sci. Instrum., 92 (3), 033539 (2021). DOI: 10.1063/5.0030307
- A. Ponomarenko, A. Yashin, G. Kurskiev, V. Minaev, A. Petrov, Y. Petrov, N. Sakharov, N. Zhiltsov, Sensors, 23 (2), 830 (2023). DOI: 10.3390/s23020830
- A.Y. Yashin, V.V. Bulanin, A.V. Petrov, V.K. Gusev, G.S. Kurskiev, V.B. Minaev, M.I. Patrov, Yu.V. Petrov, Plasma Phys. Rep., 46 (7), 683 (2020). DOI: 10.1134/S1063780X20070107
- A.Yu. Yashin, V.V. Bulanin, V.K. Gusev, G.S. Kurskiev, M.I. Patrov, A.V. Petrov, Yu.V. Petrov, S.Yu. Tolstyakov, Nucl. Fusion, 58 (11), 112009 (2018). DOI: 10.1088/1741-4326/aac4d8
- O. Grover, P. Manz, A.Y. Yashin, D.I. Refy, J. Seidl, N. Vianello, G. Birkenmeier, E.R. Solano, M. Sos, P. Bohm, P. Bilkova, M. Hron, R. Panek, the ASDEX Upgrade Team, the COMPASS Team, the Globus-M Team, JET Contributors, Nucl. Fusion, 64 (2), 026001 (2024). DOI: 10.1088/1741-4326/ad0eae
- A.Yu. Yashin, V.V. Bulanin, V.K. Gusev, N.A. Khromov, G.S. Kurskiev, V.B. Minaev, M.I. Patrov, A.V. Petrov, Yu.V. Petrov, D.V. Prisyazhnyuk, N.V. Sakharov, P.B. Shchegolev, S.Yu. Tolstyakov, V.I. Varfolomeev, F. Wagner, Nucl. Fusion, 54 (11), 114015 (2014). DOI: 10.1088/0029-5515/54/11/114015
- V.V. Bulanin, F. Wagner, V.I. Varfolomeev, V.K. Gusev, G.S. Kurskiev, V.B. Minaev, M.I. Patrov, A.V. Petrov, Yu.V. Petrov, D.V. Prisyazhnyuk, N.V. Sakharov, S.Yu. Tolstyakov, N.A. Khromov, P.B. Shchegolev, A.Yu. Yashin, Tech. Phys. Lett., 40 (5), 375 (2014). DOI: 10.1134/S106378501405006X
- V.V. Bulanin, N.N. Bakharev, V.K. Gusev, G.S. Kurskiev, V.B. Minaev, M.I. Patrov, A.V. Petrov, Yu.V. Petrov, N.V. Sakharov, P.B. Shchegolev, A.Yu. Telnova, S.Yu. Tolstyakov, A.Yu. Yashin, Phys. Atom. Nucl., 83 (7), 1124 (2020). DOI: 10.1134/S1063778820070042
- V.V. Bulanin, I.M. Balachenkov, V.I. Varfolomeev, V.K. Gusev, G.S. Kurskiev, V.B. Minaev, M.I. Patrov, A.V. Petrov, Yu.V. Petrov, A.M. Ponomarenko, A.Yu. Telnova, P.B. Shchegolev, A.Yu. Yashin, Tech. Phys. Lett., 47 (2), 197 (2021). DOI: 10.1134/S1063785021020206
- A.Yu. Yashin, V.V. Bulanin, V.K. Gusev, E.O. Kiselev, G.S. Kurskiev, V.B. Minaev, M.I. Patrov, A.V. Petrov, Yu.V. Petrov, A.M. Ponomarenko, P.B. Shchegolev, Nucl. Fusion, 61 (9), 092001 (2021). DOI: 10.1088/1741-4326/ac1297
- A. Yashin, A. Ponomarenko, I. Balachenkov, G. Kurskiev, E. Kiselev, V. Minaev, A. Petrov, Y. Petrov, N. Sakharov, N. Zhiltsov, Appl. Sci., 13 (6), 3430 (2023). DOI: 10.3390/app13063430
- V.V. Bulanin, V.K. Gusev, N.A. Khromov, G.S. Kurskiev, V.B. Minaev, M.I. Patrov, A.V. Petrov, M.A. Petrov, Yu.V. Petrov, D. Prisiazhniuk, N.V. Sakharov, S.Yu. Tolstyakov, A.Yu. Yashin, Nucl. Fusion, 59 (9), 096026 (2019). DOI: 10.1088/1741-4326/ab2cdf
- A.Y. Yashin, A.M. Ponomarenko, N.S. Zhlitsov, K.A. Kukushkin, G.S. Kurskiev, V.B. Minaev, A.V. Petrov, Yu.V. Petrov, N.V. Sakharov, Tech. Phys. Lett., 49 (3), S239 (2023). DOI: 10.1134/S1063785023900893
- A. Yashin, N. Teplova, G. Zadvitskiy, A. Ponomarenko, Sensors, 22 (23), 9441 (2022). DOI: 10.3390/s22239441
- V.V. Bulanin, E.Z. Gusakov, V.K. Gusev, G. Zadvitskiy, C. Lechte, S. Heuraux, V.B. Minaev, A.V. Petrov, Yu.V. Petrov, N.V. Sakharov, N. Teplova, A.Yu. Yashin, Plasma Phys. Rep., 46 (5), 490 (2020). DOI: 10.1134/S1063780X20050025
- A. Yashin, V. Bulanin, A. Petrov, A. Ponomarenko, Appl. Sci., 11 (19), 8975 (2021). DOI: 10.3390/app11198975
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