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相关论文: Linear and nonlinear analysis of Ion-Temperature-G…

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A theory of non-local linear ion-temperature-gradient (ITG) drift modes while retaining non-adiabatic electrons is presented, extending the previous work [S. Moradi, et al {\em Phys. Plasmas} {\bf 18}, 062106 (2011)]. A dispersion relation…

等离子体物理 · 物理学 2012-08-14 Sara Moradi , Johan Anderson , B. Weyssow

The drift instabilities driven by the slab ion temperature gradient (ITG) in Kappa-distributed plasmas are investigated by the kinetic method. The linear dispersion relation is given in an integral representation involving only the standard…

等离子体物理 · 物理学 2024-09-05 Ran Guo

We construct a description of Ion Temperature Gradient (ITG) driven localised linear modes which retains both wave-particle and magnetic drift resonant effects while capturing the field-line dependence of the electrostatic potential. We…

等离子体物理 · 物理学 2024-07-04 Eduardo Rodriguez , Alessandro Zocco

The electromagnetic theory of the strongly driven ion-temperature-gradient (ITG) instability in magnetically confined toroidal plasmas is developed. Stabilizing and destabilizing effects are identified, and a critical $\beta_{e}$ (the ratio…

等离子体物理 · 物理学 2015-02-23 A. Zocco , P. Helander , J. W. Connor

We study a quasi-two-dimensional electrostatic drift kinetic system as a model for near-marginal ion temperature gradient (ITG) driven turbulence. A proof is given of the nonlinear stability of this system under conditions of linear…

等离子体物理 · 物理学 2015-04-16 G. G. Plunk

Turbulence induced by the ion temperature gradient (ITG) is investigated in the helical and axisymmetric plasma states of a reversed field pinch device by means of gyrokinetic calculations. The two magnetic configurations are systematically…

等离子体物理 · 物理学 2015-06-11 I. Predebon , P. Xanthopoulos

In this study, global nonlinear electromagnetic gyrokinetic simulations are conducted to investigate turbulence in the Internal transport barrier (ITB) region of the EAST tokamak discharge with weakly reversed magnetic shear. Linear…

等离子体物理 · 物理学 2025-11-07 Yuehao Ma , Pengfei Liu , Jian Bao , Zhihong Lin , Huishan Cai

We have shown that there exists low-frequency growing modes driven by a global temperature gradient in electron and ion plasmas, by linear perturbation analysis within the frame work of plasma Kinetic theory. The driving force of the…

天体物理学 · 物理学 2009-10-31 Makoto Hattori , Keiichi Umetsu

We show that, under Braginskii magneto-hydrodynamics, anti-parallel gradients in average ion charge state and electron temperature can be unstable to the growth of self-generated magnetic fields. The instability is analogous to the…

等离子体物理 · 物理学 2021-02-03 James D. Sadler , Hui Li

Using the averaged magnetic drift model and a first-order finite Larmor radius (FLR) expansion, the eigenvalue equation for the ion temperature gradient (ITG) mode in tokamak plasmas is reduced to a Schr\"odinger-type differential equation.…

等离子体物理 · 物理学 2025-11-25 B. Jia , Q. Zhong , Y. Li , Y. Xiao

An analytical model for zonal flow generation by toroidal ion-temperature-gradient (ITG) modes, including finite $\beta$ electromagnetic effects, is derived. The derivation is based on a fluid model for ions and electrons and takes into…

等离子体物理 · 物理学 2015-05-27 Johan Anderson , Hans Nordman , Rameswar Singh , Raghvendra Singh

The hot electron-positron unmagnetized plasma with small fraction of cold electron-ion plasma is investigated. The modulational interactions of the electromagnetic waves and the electron-sound waves are studied. The possibility of soliton…

天体物理学 · 物理学 2009-10-31 N. L. Shatashvili , J. I. Javakhishvili , H. Kaya

Electrostatic Gravitational or Rayleigh-Taylor (RT) instability in an inhomogeneous magnetized multi-ions plasma with some fraction of quantum mechanical electrons. The effect of Bohm potential, temperature degeneracy and magnetic field are…

等离子体物理 · 物理学 2018-05-08 A. Mushtaq , Sajad Ali , Zahida Ehsan

We report the first experimental evidence of Alfvenic ion temperature gradient (AITG) modes in HL-2A Ohmic plasmas. A group of oscillations with $f=15-40$ kHz and $n=3-6$ is detected by various diagnostics in high-density Ohmic regimes.…

Oblique propagation and head-on collisions of solitary structures is studied in a dense magnetized plasma comprised of relativistic ultra-cold electrons and positrons and positive dynamic ions using conventional extended multi-scales…

太阳与恒星天体物理 · 物理学 2015-05-27 M. Akbari-Moghanjoughi

Electrostatic drift instabilities driven by ion and electron temperature gradients (ITG and ETG instabilities) are considered for the ranges of perpendicular wave number values from the inverse ion thermal gyroradius up to the electron…

等离子体物理 · 物理学 2010-09-14 A. D. Bolshakova , A. Yu. Chirkov , V. I. Khvesyuk

Turbulent transport remains one of the principal obstacles to achieving efficient magnetic confinement in fusion devices. Two of the dominant drivers of the turbulence are microscale instabilities fuelled by electron- and ion-temperature…

等离子体物理 · 物理学 2026-01-23 T. Adkins , I. G. Abel , M. Barnes , S. Buller , W. Dorland , P. G. Ivanov , R. Meyrand , F. I. Parra , A. A. Schekochihin , J. Squire

The kinetic excitation of ideal magnetohydrodynamic (MHD) discrete Alfven eigenmodes in the second MHD ballooning stable domain is studied in the presence of a thermal ion temperature gradient (ITG), using linear gyrokinetic…

等离子体物理 · 物理学 2009-12-08 Andreas Bierwage , Liu Chen , Fulvio Zonca

Nonlinear regimes of one-dimensional parametric instabilities of long-wave plasma waves are considered for the cases when the average plasma field energy density is less (Zakharov's model) or greater (Silin's model) than the plasma thermal…

等离子体物理 · 物理学 2015-02-03 A. V. Kirichok , V. M. Kuklin , A. V. Pryjmak , A. G. Zagorodny

The characteristics of ion temperature gradient (ITG) turbulence in the presence of a magnetic island are numerically investigated using a gyrokinetic model. We observe that in the absence of the usual ITG drive gradient, a solitary…

等离子体物理 · 物理学 2023-12-29 Jingchun Li , J. Bao , Z. Lin , J. Q. Dong , Yong Liu , Y. R. Qu
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