최소 단어 이상 선택하여야 합니다.
최대 10 단어까지만 선택 가능합니다.
다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
NTIS 바로가기Nuclear fusion. Fusion nucléaire. &n.Illigat;&n.Arligat;derny&n.ibreve; sintez. Fusión nuclear, v.60 no.12, 2020년, pp.126021 -
Kim, M.H. , Thatipamula, S.G. , Kim, J. , Choi, M.J. , Lee, J. , Lee, W. , Kim, M. , Yoon, Y.D. , Yun, G.S.
초록이 없습니다.
Kirk, A., Koch, B., Scannell, R., Wilson, H. R., Counsell, G., Dowling, J., Herrmann, A., Martin, R., Walsh, M.. Evolution of Filament Structures during Edge-Localized Modes in the MAST Tokamak. Physical review letters, vol.96, no.18, 185001-.
2003 10.1088/0741-3335/45/9/302 45 1549 0741-3335 Plasma Phys. Control. Fusion Loarte A.
2018 58 0029-5515 Nucl. Fusion Chapman B.
Yamada, Masaaki, Kulsrud, Russell, Ji, Hantao. Magnetic reconnection. Reviews of modern physics, vol.82, no.1, 603-664.
Parker, E. N.. The Solar-Flare Phenomenon and the Theory of Reconnection and Annihiliation of Magnetic Fields.. The Astrophysical journal, Supplement series, vol.8, 177-.
Cassak, P. A., Liu, Y.-H., Shay, M. A.. A review of the 0.1 reconnection rate problem. Journal of plasma physics, vol.83, no.5, 715830501-.
Malakit, K., Cassak, P. A., Shay, M. A., Drake, J. F.. The hall effect in magnetic reconnection: Hybrid versus Hall‐less hybrid simulations. Geophysical research letters, vol.36, no.7, 2009GL037538-.
Andrés, Nahuel, Dmitruk, Pablo, Gómez, Daniel. Influence of the Hall effect and electron inertia in collisionless magnetic reconnection. Physics of plasmas, vol.23, no.2, 022903-.
Bellan, P. M.. Collisionless reconnection using Alfvén wave radiation resistance. Physics of plasmas, vol.5, no.9, 3081-3088.
Yoon, Young Dae, Bellan, Paul M.. An intuitive two-fluid picture of spontaneous 2D collisionless magnetic reconnection and whistler wave generation. Physics of plasmas, vol.25, no.5, 055704-.
Forbes, Terry G.. Flares caught in the act. Nature physics, vol.9, no.8, 456-457.
Deng, X. H., Matsumoto, H.. Rapid magnetic reconnection in the Earth’s magnetosphere mediated by whistler waves. Nature, vol.410, no.6828, 557-560.
Van Compernolle, B., An, X., Bortnik, J., Thorne, R. M., Pribyl, P., Gekelman, W.. Excitation of Chirping Whistler Waves in a Laboratory Plasma. Physical review letters, vol.114, no.24, 245002-.
Van Compernolle, B., An, X., Bortnik, J., Thorne, R. M., Pribyl, P., Gekelman, W.. Erratum: Excitation of Chirping Whistler Waves in a Laboratory Plasma [Phys. Rev. Lett.114, 245002 (2015)]. Physical review letters, vol.117, no.5, 059901-.
Spong, D. A., Heidbrink, W. W., Paz-Soldan, C., Du, X. D., Thome, K. E., Van Zeeland, M. A., Collins, C., Lvovskiy, A., Moyer, R. A., Austin, M. E., Brennan, D. P., Liu, C., Jaeger, E. F., Lau, C.. First Direct Observation of Runaway-Electron-Driven Whistler Waves in Tokamaks. Physical review letters, vol.120, no.15, 155002-.
2019 10.1088/1361-6587/aae2da 61 0741-3335 Plasma Phys. Control. Fusion Heidbrink W.W.
2019 59 0029-5515 Nucl. Fusion Lvovsky A.
Thome, K. E., Pace, D. C., Pinsker, R. I., Meneghini, O., del Castillo, C. A., Zhu, Y.. Radio frequency measurements of energetic-particle-driven emission using the ion cyclotron emission diagnostic on the DIII-D tokamak. Review of scientific instruments, vol.89, no.10, 10I102-.
2014 D’Inca R.
Ochoukov, R., Bobkov, V., Chapman, B., Dendy, R., Dunne, M., Faugel, H., García-Muñoz, M., Geiger, B., Hennequin, P., McClements, K. G., Moseev, D., Nielsen, S., Rasmussen, J., Schneider, P., Weiland, M., Noterdaeme, J.-M.. Observations of core ion cyclotron emission on ASDEX Upgrade tokamak. Review of scientific instruments, vol.89, no.10, 10J101-.
Fredrickson, E. D., Gorelenkov, N. N., Bell, R. E., Diallo, A., LeBlanc, B. P., Podestà, M.. Emission in the ion cyclotron range of frequencies (ICE) on NSTX and NSTX-U. Physics of plasmas, vol.26, no.3, 032111-.
2018 10.1088/1741-4326/aac10e 58 0029-5515 Nucl. Fusion Askinazi L.G.
2013 10.1088/1009-0630/15/3/03 15 209 1009-0630 Plasma Sci. Technol. Saito K.
2016 10.1088/0741-3335/58/6/065003 58 0741-3335 Plasma Phys. Control. Fusion Thatipamula S.G.
2018 58 0029-5515 Nucl. Fusion Kim M.H.
2020 10.1088/1361-6587/ab630f 62 0741-3335 Plasma Phys. Control. Fusion Thatipamula S.G.
Dendy, R. O., Lashmore-Davies, C. N., McClements, K. G., Cottrell, G. A.. The excitation of obliquely propagating fast Alfvén waves at fusion ion cyclotron harmonics. Physics of plasmas, vol.1, no.6, 1918-1928.
2019 59 0029-5515 Nucl. Fusion Reman B.C.G.
2019 10.1088/1741-4326/ab35a7 59 0029-5515 Nucl. Fusion Chapman B.
2017 57 0029-5515 Nucl. Fusion Chapman B.
Yun, G. S., Lee, W., Choi, M. J., Lee, J., Kim, M., Leem, J., Nam, Y., Choe, G. H., Park, H. K., Park, H., Woo, D. S., Kim, K. W., Domier, C. W., Luhmann Jr., N. C., Ito, N., Mase, A., Lee, S. G.. Quasi 3D ECE imaging system for study of MHD instabilities in KSTAR. Review of scientific instruments, vol.85, no.11, 11D820-.
Nam, Y. B., Lee, D. J., Lee, J., Kim, C., Yun, G. S., Lee, W., Park, H. K.. New compact and efficient local oscillator optic system for the KSTAR electron cyclotron emission imaging system. Review of scientific instruments, vol.87, no.11, 11E130-.
Lee, Jaehyun, Yun, Gunsu S., Choi, Minjun J., Kwon, Jae-Min, Jeon, Young-Mu, Lee, Woochang, Luhmann, Neville C., Park, Hyeon K..
Nonlinear Interaction of Edge-Localized Modes and Turbulent Eddies in Toroidal Plasma under
2019 59 0029-5515 Nucl. Fusion Lee J.
2019 Spectral data analysis methods for the two-dimensional imaging diagnostics Choi M.J.
2003 315 Chapter 15: Numerical Schemes for the Analysis of Turbulence Space plasma simulation Buchner J.
Kim, Young C., Powers, Edward J.. Digital Bispectral Analysis and Its Applications to Nonlinear Wave Interactions. IEEE transactions on plasma science, vol.7, no.2, 120-131.
2020 62 0741-3335 Plasma Phys. Control. Fusion Chapman B.
Elgar, S., Guza, R.T.. Statistics of bicoherence. IEEE transactions on acoustics, speech, and signal processing, vol.36, no.10, 1667-1668.
Bellan, P. M.. Improved basis set for low frequency plasma waves. Journal of geophysical research : JGR. A : Space physics, vol.117, no.a12, 2012JA017856-.
Lee, J. E., Yun, G. S., Lee, W., Kim, M. H., Choi, M., Lee, J., Kim, M., Park, H. K., Bak, J. G., Ko, W. H., Park, Y. S.. Solitary perturbations in the steep boundary of magnetized toroidal plasma. Scientific reports, vol.7, 45075-.
2020 0920-3796 Fusion Eng. Des. Lee J.
Yun, G. S., Lee, W., Choi, M. J., Lee, J., Park, H. K., Tobias, B., Domier, C. W., Luhmann, N. C., Donné, A. J. H., Lee, J. H..
Two-Dimensional Visualization of Growth and Burst of the Edge-Localized Filaments in KSTAR
Freethy, S. J., McClements, K. G., Chapman, S. C., Dendy, R. O., Lai, W. N., Pamela, S. J. P., Shevchenko, V. F., Vann, R. G. L.. Electron Kinetics Inferred from Observations of Microwave Bursts During Edge Localized Modes in the Mega-Amp Spherical Tokamak. Physical review letters, vol.114, no.12, 125004-.
Wang, Y. M., Gao, X., Ling, B. L., Liu, Y., Zhang, S. B., Han, X., Ti, A., Li, E. Z.. Comparison of anomalous Doppler resonance effects with molybdenum and graphite limiters on HT-7. Physics of plasmas, vol.19, no.3, 032509-.
Li, Erzhong, Austin, M. E., White, R. B., Taylor, G.. The build-up of energetic electrons triggering electron cyclotron emission bursts due to a magnetohydrodynamic mode at the edge of tokamaks. Physics of plasmas, vol.24, no.9, 092509-.
Shalashov, A. G., Viktorov, M. E., Mansfeld, D. A., Golubev, S. V.. Kinetic instabilities in a mirror-confined plasma sustained by high-power microwave radiation. Physics of plasmas, vol.24, no.3, 032111-.
Zheleznyakov, V. V., Zlotnik, E. Ya.. Cyclotron wave instability in the corona and origin of solar radio emission with fine structure : I. Bernstein modes and plasma waves in a hybrid band. Solar physics, vol.43, no.2, 431-451.
2010 10.1088/1674-4527/10/9/002 10 821 1674-4527 Res. Astron. Astrophys. Chernov G.P.
2016 10.3367/UFNe.2016.05.037813 59 10 1063-7869 Phys.-Usp. Zheleznyakov V.V.
해당 논문의 주제분야에서 활용도가 높은 상위 5개 콘텐츠를 보여줍니다.
더보기 버튼을 클릭하시면 더 많은 관련자료를 살펴볼 수 있습니다.
*원문 PDF 파일 및 링크정보가 존재하지 않을 경우 KISTI DDS 시스템에서 제공하는 원문복사서비스를 사용할 수 있습니다.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.