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Edge localised modes (ELMs) are a concern for future devices as they can limit the operational lifetime of the divertor. The mitigation of ELMs can be performed by the application of resonant magnetic perturbations (RMPs) which act to…

Plasma Physics · Physics 2013-06-28 A. J. Thornton , A. Kirk , I. T. Chapman , J. R. Harrison , the MAST Team

A subspace of resonant magnetic perturbation (RMP) configurations for edge localized mode (ELM) suppression is predicted for H-mode burning plasmas at 15 MA current and 5.3 T magnetic field in ITER. Perturbation of the core plasma can be…

Plasma Physics · Physics 2024-12-23 H. Frerichs , J. van Blarcum , Y. Feng , L. Li , Y. Q. Liu , A. Loarte , J. -K. Park , R. A. Pitts , O. Schmitz , S. M. Yang

Edge localised modes (ELMs) are a concern for future devices, such as ITER, due to the large transient heat loads they generate on the divertor surfaces which could limit the operational time of the device. This paper discusses the…

Plasma Physics · Physics 2014-06-12 A. J. Thornton , A. Kirk , P. Cahyna , I. T. Chapman , J. R. Harrison , Yueqiang Liu , MAST Team

The application of resonant magnetic perturbations (RMPs) with a toroidal mode number of n=3 to connected double null plasmas in the MAST tokamak produces up to a factor of 9 increase in Edge Localized Mode (ELM) frequency and reduction in…

Plasma Physics · Physics 2014-02-28 A. Kirk , Yueqiang Liu , I. T. Chapman , J. Harrison , E. Nardon , R. Scannell , A. J. Thornton , the MAST team

Resonant magnetic perturbations (RMP) have extensively been demonstrated as a plausible technique for mitigating or suppressing large edge localized modes (ELMs). Associated with this is a substantial amount of theory and modelling efforts…

Plasma Physics · Physics 2016-11-03 Yueqiang Liu , C. J. Ham , A. Kirk , Li Li , A. Loarte , D. A. Ryan , Youwen Sun , W. Suttrop , Xu Yang , Lina Zhou

The application of resonant magnetic perturbations (RMPs) with a toroidal mode number of n=4 or n=6 to lower single null plasmas in the MAST tokamak produces up to a factor of 5 increase in Edge Localized Mode (ELM) frequency and reduction…

Resonant magnetic perturbations (RMPs) can mitigate the edge-localized modes (ELMs), i.e. cause a change of the ELM character towards smaller energy loss and higher frequency. During mitigation a change of the spatial structure of ELM loads…

The application of non-axisymmetric resonant magnetic perturbations (RMPs) with a toroidal mode number n=6 in the MAST tokamak produces a significant reduction in plasma energy loss associated with type-I Edge Localized Modes (ELMs), the…

Plasma Physics · Physics 2014-08-07 A. Kirk , J. Harrison , Yueqiang Liu , E. Nardon , I. T. Chapman , P. Denner , the MAST team

Edge localised modes (ELMs) allow maintaining sufficient purity of tokamak H-mode plasmas and thus enable stationary H-mode. On the other hand in a future device ELMs may cause divertor power flux densities far in excess of tolerable…

General formula describing both the divertor strike point splitting and width of magnetic islands created by resonant magnetic perturbations (RMPs) in a poloidally diverted tokamak equilibrium is derived. Under the assumption that the RMP…

Plasma Physics · Physics 2010-12-01 Pavel Cahyna , Eric Nardon

Edge localized modes (ELMs) and runaway electrons (REs) pose significant challenges for all Tokamak devices and act as potent heat sources, potentially shortening the lifespan of plasma-facing materials (PFMs). These thermal loads can…

Plasma Physics · Physics 2025-12-02 Ali Masoudi , Davoud Iraji , Chapar Rasouli

Sustained ELM mitigation has been achieved on MAST and AUG using RMPs with a range of toroidal mode numbers over a wide region of low to medium collisionality discharges. The ELM energy loss and peak heat loads at the divertor targets have…

Detailed 2D turbulence measurements from the DIII-D tokamak provide an explanation for how resonant magnetic perturbations (RMPs) raise the L-H power threshold $P_\textrm{LH}$ [P. Gohil et al., Nucl. Fusion 51, 103020 (2011)] in…

Plasma Physics · Physics 2020-06-24 D. M. Kriete , G. R. McKee , L. Schmitz , D. R. Smith , Z. Yan , L. A. Morton , R. J. Fonck

Turbulence spreading from edge to core region with resonance magnetic perturbation (RMP) is investigated using an electromagnetic Landau-fluid model in toroidal geometry. When RMP field with appropriate amplitude are employed in the…

Plasma Physics · Physics 2023-07-26 Guangzhi Ren , Lai Wei , Zheng-Xiong Wang , Jiquan Li

All current estimations of the energy released by type I ELMs indicate that, in order to ensure an adequate lifetime of the divertor targets on ITER, a mechanism is required to decrease the amount of energy released by an ELM, or to…

The application of resonant magnetic perturbations (RMPs) produces splitting of the divertor strike point due to the interaction of the RMP field and the plasma field. The application of a rotating RMP field causes the strike point…

The safety-factor profile of a magnetically diverted tokamak plasma diverges logarithmically as the magnetic separatrix (a.k.a. the last closed magnetic flux-surface) is approached. At first sight, this suggests that, when determining the…

Plasma Physics · Physics 2025-12-12 R. Fitzpatrick

Effects of resonant magnetic perturbations (RMPs) on tangential neutral beam heating in the EAST tokamak are studied numerically. RMPs with linear resistive magnetohydrodynamics response are used in the modeling. A variety of representing…

An analytic theory of edge localized mode (ELM) suppression in an H-mode tokamak plasma via the application of a static, externally generated, resonant magnetic perturbation (RMP) is presented. This theory is based on the plausible…

Plasma Physics · Physics 2019-09-20 Richard Fitzpatrick

Plasma response to resonant magnetic perturbations (RMPs) near the pedestal top is crucial for accessing edge localized modes (ELMs) suppression in tokamaks. Since radial location of rotation zero-crossing plays a key role in determining…

Plasma Physics · Physics 2021-10-04 Pengcheng Xie , Youwen Sun , Yueqiang Liu , Shuai Gu , Qun Ma , Cheng Ye , Xuemin Wu , Hui Sheng
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