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Strong gradient regions in tokamaks such as the pedestal or internal transport barriers are regions of reduced turbulence where neoclassical transport can play a dominant role. In pedestals, gradient lengths comparable to the ion poloidal…

Plasma Physics · Physics 2026-03-17 Silvia Trinczek , Felix I. Parra , Peter J. Catto , Iván Calvo

Strong gradient regions in tokamaks, such as the pedestal or internal transport barriers, are regions of reduced turbulence where neoclassical transport can play a dominant role. However, standard neoclassical transport theory assumes that…

Plasma Physics · Physics 2026-02-24 Silvia Trinczek , Felix I. Parra

In a tokamak pedestal, radial scale lengths can become comparable to the ion orbit width, invalidating conventional neoclassical calculations of flow and bootstrap current. In this work we illustrate a non-local approach that allows strong…

Plasma Physics · Physics 2012-06-27 Matt Landreman , Darin R. Ernst

In transport barriers, particularly H-mode edge pedestals, radial scale lengths can become comparable to the ion orbit width, causing neoclassical physics to become radially nonlocal. In this work, the resulting changes to neoclassical flow…

Plasma Physics · Physics 2012-10-23 Matt Landreman , Darin R. Ernst

We present a new neoclassical transport model for large aspect ratio tokamaks where the gradient scale lengths are of the size of the poloidal gyroradius. Previous work on neoclassical transport across transport barriers assumed large…

Plasma Physics · Physics 2023-04-20 Silvia Trinczek , Felix I. Parra , Peter J. Catto , Iván Calvo , Matt Landreman

Intrinsic toroidal rotation in a tokamak can be driven by turbulent momentum transport due to neoclassical flow effects breaking a symmetry of turbulence. In this paper we categorize the contributions due to neoclassical effects to the…

Plasma Physics · Physics 2015-06-03 Jungpyo Lee , Michael Barnes , Felix I Parra , Emily Belli , Jeff Candy

In tokamak transport barriers, the radial scale of profile variations can be comparable to a typical ion orbit width, which makes the coupling of the distribution function across flux surfaces important in the collisional dynamics. We use…

Plasma Physics · Physics 2017-04-26 Stefan Buller , Istvan Pusztai , Sarah Newton , John Omotani

We present a numerical study of collisional transport in a tokamak pedestal in the presence of non-trace impurities, using the radially global $\delta f$ neoclassical solver PERFECT [M. Landreman et al. 2014 Plasma Phys. Control. Fusion 56…

Plasma Physics · Physics 2016-08-03 I. Pusztai , S. Buller , M. Landreman

Stronger impurity density in-out poloidal asymmetries than predicted by the most comprehensive neoclassical models have been measured in several tokamaks around the world during the last decade, calling into question the reduction of…

Plasma Physics · Physics 2020-06-23 Silvia Espinosa , Peter J. Catto

The guiding center and gyrokinetic theory of magnetized particle motion is extended to the regime of large electric field gradients perpendicular to the magnetic field. A gradient in the electric field directly modifies the oscillation…

Plasma Physics · Physics 2021-04-21 Ilon Joseph

An investigation is made into the effect of the reduction in anomalous perpendicular electron heat transport inside the separatrix of a magnetic island chain associated with a neoclassical tearing mode in a tokamak plasma, due to the…

Plasma Physics · Physics 2017-05-24 Richard Fitzpatrick

Understanding the multi-scale neoclassical and turbulence physics in the edge region (pedestal + scrape-off layer) is required in order to reliably predict performance in future fusion devices. We explore turbulent characteristics in the…

Plasma Physics · Physics 2017-09-13 R. M. Churchill , C. S. Chang , S. Ku

The effect of the perturbed ion polarization current on the stability of neoclassical tearing modes is calculated using an improved, neoclassical, four-field, drift-MHD model. The calculation involves the self-consistent determination of…

Plasma Physics · Physics 2016-05-25 Richard Fitzpatrick

The neoclassical prescription to use an equation of motion to determine the electrostatic field within a tokamak plasma is fraught with difficulties. Herein we examine two popular expressions for the equilibrium electrostatic field so…

Plasma Physics · Physics 2011-04-29 Robert W. Johnson

In this paper, we develop the kinetic and hydrodynamic theories of the convective mesoscale flows driven by the spatially inhomogeneous electrostatic ion cyclotron parametric microturbulence in the pedestal plasma with a sheared poloidal…

Plasma Physics · Physics 2022-07-20 V. S. Mikhailenko , V. V. Mikhailenko , Hae June Lee

The neoclassical polarization current, generated when a magnetic island propagates through a tokamak plasma, is believed to influence the initial stage of the neoclassical tearing mode evolution. Understanding the strength of its…

Plasma Physics · Physics 2015-06-04 K. Imada , H. R. Wilson

Poloidal asymmetries in the impurity density can be generated by radio frequency heating in the core and by neoclassical effects in the edge of tokamak plasmas. In a pedestal case study, using global neoclassical simulations we find that…

Plasma Physics · Physics 2015-10-28 István Pusztai , Matt Landreman , Albert Mollén , Yevgen O. Kazakov , Tünde Fülöp

This study presents the investigation of the connection between radial electric field, gradient of Reynolds stress and Long Range Correlation (LRC), as a proxy for Zonal Flows (ZF), in different plasma scenarios in the TJ-II stellarator.…

Plasma Physics · Physics 2020-01-08 R. Gerrú , S. Mulas , U. Losada , F. Castejón , B. Liu , T. Estrada , B Ph van Milligen , C. Hidalgo

Ion orbit loss is considered important for generating the radially inward electric field $E_r$ in a tokamak edge plasma. In particular, this effect is emphasized in diverted tokamaks with a magnetic X point. In neoclassical equilibria,…

Plasma Physics · Physics 2022-04-06 Hongxuan Zhu , T. Stoltzfus-Dueck , R. Hager , S. Ku , C. S. Chang

The component of the neoclassical electrostatic potential that is non-constant on the magnetic surface, that we denote by $\tilde\varphi$, can affect radial transport of highly charged impurities, and this has motivated its inclusion in…

Plasma Physics · Physics 2018-09-12 Ivan Calvo , J. L. Velasco , Felix I. Parra , J. Arturo Alonso , J. M. García-Regaña
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