Reconstruction of electron velocity distribution function and Gibbs entropy from electron cyclotron emission in magnetized plasmas

Fuente: arXiv
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Auteur principal: Eiichirou, Kawamori
Format: Preprint
Publié: 2024
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author Eiichirou, Kawamori
author_facet Eiichirou, Kawamori
contents We propose a method for reconstructing the fluctuation components of the electron velocity distribution function f(v_perp), and the electron entropy, which is a functional of f(v_perp) expressed as -f(v_perp)lnf(v_perp)dv_perp, using the harmonic spectrum from pure X-mode electron cyclotron emission (ECE) in optically thin plasmas. Here, v_perp represents the electron velocity perpendicular to the background magnetic field. This formulation employs the maximum entropy method in velocity space using the Hankel transform, which converts from v_perp space to p space (where p is the index of the wavenumber in velocity space). Numerical tests validated the effectiveness of the proposed method, which is applicable across a wide range of magnetized plasma conditions, including conditions with both non-relativistic and relativistic electrons, except in cases of harmonic overlap or under optically thick conditions. Notably, this method does not require radiometer calibration for ECE measurements. This method fascilitates the experimental evaluation of electron entropy transport in fusion plasma experiments. Moreover, when combined with measurements in k-space (spatial distribution), this approach enables entropy distribution acquisition in phase space (k-p space).
format Preprint
id arxiv_https___arxiv_org_abs_2411_10799
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Reconstruction of electron velocity distribution function and Gibbs entropy from electron cyclotron emission in magnetized plasmas
Eiichirou, Kawamori
Plasma Physics
Space Physics
We propose a method for reconstructing the fluctuation components of the electron velocity distribution function f(v_perp), and the electron entropy, which is a functional of f(v_perp) expressed as -f(v_perp)lnf(v_perp)dv_perp, using the harmonic spectrum from pure X-mode electron cyclotron emission (ECE) in optically thin plasmas. Here, v_perp represents the electron velocity perpendicular to the background magnetic field. This formulation employs the maximum entropy method in velocity space using the Hankel transform, which converts from v_perp space to p space (where p is the index of the wavenumber in velocity space). Numerical tests validated the effectiveness of the proposed method, which is applicable across a wide range of magnetized plasma conditions, including conditions with both non-relativistic and relativistic electrons, except in cases of harmonic overlap or under optically thick conditions. Notably, this method does not require radiometer calibration for ECE measurements. This method fascilitates the experimental evaluation of electron entropy transport in fusion plasma experiments. Moreover, when combined with measurements in k-space (spatial distribution), this approach enables entropy distribution acquisition in phase space (k-p space).
title Reconstruction of electron velocity distribution function and Gibbs entropy from electron cyclotron emission in magnetized plasmas
topic Plasma Physics
Space Physics
url https://arxiv.org/abs/2411.10799