Maxime LESUR

About Maxime LESUR

Maxime LESUR, With an exceptional h-index of 21 and a recent h-index of 14 (since 2020), a distinguished researcher at Université de Lorraine, specializes in the field of Plasma, Physics, Fusion, Turbulence, Kinetic theory.

His recent articles reflect a diverse array of research interests and contributions to the field:

Self-consistent gyrokinetic modeling of turbulent and neoclassical tungsten transport in toroidally rotating plasmas

Collision rates estimated from exact N-body simulations

SPEKTRE, a linear radiofrequency device for investigating edge plasma physics

Tungsten surface temperature calculated by means of PIC simulations: bifurcation and space charge limited regime

Particle dynamics in a turbulent electric field

Global linear stability analysis of kinetic trapped ion mode (TIM) in tokamak plasma using the spectral method

Gyrokinetics

Identification of trapping finer-scale fluctuations in a solitary vortex in linear magnetized plasma

Maxime LESUR Information

University

Position

Institut Jean Lamour France

Citations(all)

2864

Citations(since 2020)

2006

Cited By

1517

hIndex(all)

21

hIndex(since 2020)

14

i10Index(all)

38

i10Index(since 2020)

23

Email

University Profile Page

Google Scholar

Maxime LESUR Skills & Research Interests

Plasma

Physics

Fusion

Turbulence

Kinetic theory

Top articles of Maxime LESUR

Self-consistent gyrokinetic modeling of turbulent and neoclassical tungsten transport in toroidally rotating plasmas

Physics of Plasmas

2023/8/1

Maxime Lesur
Maxime Lesur

H-Index: 18

Collision rates estimated from exact N-body simulations

2023/7/3

SPEKTRE, a linear radiofrequency device for investigating edge plasma physics

2023/7/3

Tungsten surface temperature calculated by means of PIC simulations: bifurcation and space charge limited regime

2023/5/22

Particle dynamics in a turbulent electric field

Physics of Plasmas

2023/5/1

Global linear stability analysis of kinetic trapped ion mode (TIM) in tokamak plasma using the spectral method

Plasma Physics and Controlled Fusion

2023/3/15

Gyrokinetics

2023/2/6

Maxime Lesur
Maxime Lesur

H-Index: 18

Identification of trapping finer-scale fluctuations in a solitary vortex in linear magnetized plasma

Plasma Physics and Controlled Fusion

2023/9/28

Impurity transport through two types of transport barrier in 5D gyrokinetic simulations

2023/9/11

Ion transport through Radio-Frequency sheaths studied by Particle-In-Cell simulations

2023/9/11

Thermionic emission of a tungsten surface in high heat flux plasma: PIC simulations

Physics of Plasmas

2023/8/1

Formation Process of a Solitary Vortex in a Zonal Flow-Drift-Wave Dynamics

Plasma and Fusion Research

2022/11/24

Transport barrier in 5D gyrokinetic flux-driven simulations

Nuclear Fusion

2022/10/17

Gyro-kinetic investigation of the dynamics of geodesic acoustic modes

2022/10/4

Resonance broadening in quasilinear theory: towards Kubo

2022/6/27

Maxime Lesur
Maxime Lesur

H-Index: 18

Simulations semi-lagrangiennes et multi-échelles de l’équation de Vlasov pour la modélisation des plasmas chauds

2022

Maxime Lesur
Maxime Lesur

H-Index: 18

Sheath size and Child–Langmuir law in one dimensional bounded plasma system in the presence of an oblique magnetic field: PIC results

Physics of Plasmas

2021/8/1

Maxime Lesur
Maxime Lesur

H-Index: 18

Impurity transport in collisionless trapped-particle-driven turbulence

2021/5/10

Maxime Lesur
Maxime Lesur

H-Index: 18

Sheath size and Child-Langmuir law in one dimensional plasma in the presence of an oblique magnetic field: PIC simulations results

2021/5/3

Maxime Lesur
Maxime Lesur

H-Index: 18

Gyrokinetic modelling of light to heavy impurity transport in tokamaks

Nuclear Fusion

2021/3/18

See List of Professors in Maxime LESUR University(Université de Lorraine)