Matt Landreman

Matt Landreman

University of Maryland

H-index: 35

North America-United States

About Matt Landreman

Matt Landreman, With an exceptional h-index of 35 and a recent h-index of 26 (since 2020), a distinguished researcher at University of Maryland, specializes in the field of Plasma physics.

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

A family of quasi-axisymmetric stellarators with varied rotational transform

Topology optimization for inverse magnetostatics as sparse regression: Application to electromagnetic coils for stellarators

MONKES: a fast neoclassical code for the evaluation of monoenergetic transport coefficients in stellarator plasmas

Optimization of nonlinear turbulence in stellarators

Grad–Shafranov equilibria via data-free physics informed neural networks

The magnetic gradient scale length explains why certain plasmas require close external magnetic coils

Single-stage stellarator optimization: combining coils with fixed boundary equilibria

Efficient calculation of self magnetic field, self-force, and self-inductance for electromagnetic coils. II. Rectangular cross-section

Matt Landreman Information

University

Position

Associate Research Scientist

Citations(all)

4036

Citations(since 2020)

2523

Cited By

2483

hIndex(all)

35

hIndex(since 2020)

26

i10Index(all)

96

i10Index(since 2020)

73

Email

University Profile Page

Google Scholar

Matt Landreman Skills & Research Interests

Plasma physics

Top articles of Matt Landreman

Title

Journal

Author(s)

Publication Date

A family of quasi-axisymmetric stellarators with varied rotational transform

arXiv preprint arXiv:2401.09021

Stefan Buller

Matt Landreman

John Kappel

Rahul Gaur

2024/1/17

Topology optimization for inverse magnetostatics as sparse regression: Application to electromagnetic coils for stellarators

Computer Methods in Applied Mechanics and Engineering

Alan A Kaptanoglu

Gabriel P Langlois

Matt Landreman

2024/1/1

MONKES: a fast neoclassical code for the evaluation of monoenergetic transport coefficients in stellarator plasmas

arXiv preprint arXiv:2312.12248

FJ Escoto

JL Velasco

I Calvo

M Landreman

FI Parra

2023/12/19

Optimization of nonlinear turbulence in stellarators

Journal of Plasma Physics

Patrick Kim

Stefan Buller

Rory Conlin

William Dorland

Daniel W Dudt

...

2024/4

Grad–Shafranov equilibria via data-free physics informed neural networks

Physics of Plasmas

Byoungchan Jang

Alan A. Kaptanoglu

Rahul Gaur

Shaowu Pan

Matt Landreman

...

2024/3/25

The magnetic gradient scale length explains why certain plasmas require close external magnetic coils

Plasma Physics and Controlled Fusion

John Kappel

Matt Landreman

Dhairya Malhotra

2024/1/18

Single-stage stellarator optimization: combining coils with fixed boundary equilibria

Plasma Physics and Controlled Fusion

R Jorge

A Goodman

M Landreman

J Rodrigues

F Wechsung

2023/6/6

Efficient calculation of self magnetic field, self-force, and self-inductance for electromagnetic coils. II. Rectangular cross-section

arXiv preprint arXiv:2310.12087

Matt Landreman

Siena Hurwitz

Thomas M Antonsen Jr

2023/10/18

Reduced models of self-force, stored energy, and critical current for design optimization of electromagnets

APS Division of Plasma Physics Meeting Abstracts

Matt Landreman

Siena Hurwitz

Thomas Antonsen

2023

Streamlined calculations of the neoclassical bootstrap current and ambipolar radial electric field for stellarator optimization

APS Division of Plasma Physics Meeting Abstracts

John Schmitt

Matt Landreman

Aaron Bader

2023

Direct microstability optimization of stellarator devices

arXiv preprint arXiv:2301.09356

R Jorge

W Dorland

P Kim

M Landreman

NR Mandell

...

2023/1/23

Neoclassical transport in strong gradient regions of large aspect ratio tokamaks

Journal of Plasma Physics

Silvia Trinczek

Felix I Parra

Peter J Catto

Iván Calvo

Matt Landreman

2023/6

Efficient calculation of the self magnetic field, self-force, and self-inductance for electromagnetic coils

arXiv preprint arXiv:2310.09313

Siena Hurwitz

Matt Landreman

Thomas M Antonsen

2023/10/12

Coil topology optimization for stellarators

APS Division of Plasma Physics Meeting Abstracts

Alan Kaptanoglu

Matt Landreman

Gabriel Langlois

2023

EPOS: Stellarator design for pair plasmas

APS Division of Plasma Physics Meeting Abstracts

Jason Smoniewski

Pedro Gil

Paul Huslage

Dylan Schmeling

Matthew Beidler

...

2023

Stellarator design for pair plasmas

J Smoniewski

P Gil

P Huslage

D Schmeling

MT Beidler

...

2023

Some theoretical advances for easing stellarator power plant engineering challenges

APS Division of Plasma Physics Meeting Abstracts

Matt Landreman

Thomas Antonsen

Siena Hurwitz

Jonathan Kappel

Dhairya Malhotra

2023

Direct optimization of fast-ion confinement in stellarators

Plasma Physics and Controlled Fusion

David Bindel

Matt Landreman

Misha Padidar

2023/5/11

Understanding trade-offs in stellarator design with multi-objective optimization

Journal of Plasma Physics

David Bindel

Matt Landreman

Misha Padidar

2023/10

Coil Optimization for Quasi-helically Symmetric Stellarator Configurations

arXiv preprint arXiv:2311.16386

Alexander Vyacheslav Wiedman

Stefan Buller

Matt Landreman

2023/11/28

See List of Professors in Matt Landreman University(University of Maryland)

Co-Authors

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