Analysing the distribution of runaway electrons in the EAST tokamak based on SOFT
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Liqun Hu | Jiayuan Zhang | Y. Chao | R. Zhou | Meiwen Chen | Yongkuan Zhang | Pan Li
[1] Jiayuan Zhang,et al. Observation of trapped and passing runaway electrons by infrared camera in the EAST tokamak* , 2021, Chinese Physics B.
[2] Jet Contributors,et al. Demonstration of Safe Termination of Megaampere Relativistic Electron Beams in Tokamaks. , 2021, Physical review letters.
[3] B. Duval,et al. Tomographic reconstruction of the runaway distribution function in TCV using multispectral synchrotron images , 2020, 2011.00077.
[4] A. Sips,et al. Analysis of runaway electron discharge formation during Joint European Torus plasma start-up , 2020, Plasma Physics and Controlled Fusion.
[5] P. McCarthy,et al. Spatiotemporal analysis of the runaway distribution function from synchrotron images in an ASDEX Upgrade disruption , 2020, Journal of Plasma Physics.
[6] Yueqiang Liu,et al. Runaway electron beam dynamics at low plasma density in DIII-D: energy distribution, current profile, and internal instability , 2020, Nuclear Fusion.
[7] B. Duval,et al. Runaway electron synchrotron radiation in a vertically translated plasma , 2020, Nuclear Fusion.
[8] P. Aleynikov,et al. Physics of runaway electrons in tokamaks , 2019, Nuclear Fusion.
[9] M. Hoppe,et al. Spatiotemporal evolution of runaway electrons from synchrotron images in Alcator C-Mod , 2018, Plasma Physics and Controlled Fusion.
[10] Liqin Hu,et al. Synchrotron radiation intensity and energy of runaway electrons in EAST tokamak , 2018 .
[11] D. del-Castillo-Negrete,et al. Numerical simulation of runaway electrons: 3-D effects on synchrotron radiation and impurity-based runaway current dissipation , 2018 .
[12] D. Seo,et al. Observation of thermal quench induced by runaway electrons in magnetic perturbation , 2018 .
[13] D. Pace,et al. Resolving runaway electron distributions in space, time, and energy , 2018 .
[14] Ying Zhang,et al. Analysis of synchrotron radiation spectra of runaway electrons in Tokamak , 2017 .
[15] M. Hoppe,et al. Interpretation of runaway electron synchrotron and bremsstrahlung images , 2017, Nuclear Fusion.
[16] D. Spong,et al. First Direct Observation of Runaway-Electron-Driven Whistler Waves in Tokamaks. , 2017, Physical review letters.
[17] M. Hoppe,et al. SOFT: a synthetic synchrotron diagnostic for runaway electrons , 2017, 1709.00674.
[18] Shiyao Lin,et al. Runaway electrons generated during spontaneous disruptions in the EAST tokamak , 2017 .
[19] Allen H. Boozer,et al. Runaway electrons and ITER , 2016 .
[20] N. W. Eidietis,et al. Measurement of runaway electron energy distribution function during high-Z gas injection into runaway electron plateaus in DIII-Da) , 2015 .
[21] Litian Hu,et al. Synchrotron radiation spectra and synchrotron radiation spot shape of runaway electrons in Experimental Advanced Superconducting Tokamak , 2014 .
[22] T. Fulop,et al. Alfvénic instabilities driven by runaways in fusion plasmas , 2014, 1405.3431.
[23] M. Landreman,et al. Synchrotron radiation from runaway electron distributions in tokamaks , 2013, 1308.2099.
[24] Yingying Li,et al. Observation of runaway electron beams by visible color camera in the Experimental Advanced Superconducting Tokamak. , 2010, The Review of scientific instruments.
[25] T. Fülöp,et al. Destabilization of magnetosonic-whistler waves by a relativistic runaway beam , 2006 .
[26] M. Rosenbluth,et al. Theory for avalanche of runaway electrons in tokamaks , 1997 .
[27] H. Dreicer,et al. Electron and Ion Runaway in a Fully Ionized Gas. I , 1959 .
[28] I. Pankratov,et al. Long-Lived Banana Orbit Formation of Suprathermal Electrons During MHD Spikes in Runaway Tokamak Discharges , 2019, East European Journal of Physics.