Lubos Mitas

Lubos Mitas

North Carolina State University

H-index: 53

North America-United States

About Lubos Mitas

Lubos Mitas, With an exceptional h-index of 53 and a recent h-index of 27 (since 2020), a distinguished researcher at North Carolina State University, specializes in the field of quantum Monte Carlo, electronic structure, computational physics, applied mathematics.

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

Real space quantum Monte Carlo pair orbital wave functions for periodic systems: toward the thermodynamic limit

Quantum Monte Carlo study of straintronic response of 2D materials: monolayer phosphorene and MoS2

A new generation of effective core potentials: Selected lanthanides and heavy elements

Metals and Quantum Materials with Spin-orbit Interactions by Quantum Monte Carlo methods

Colossal band gap response of single-layer phosphorene to strain predicted by quantum Monte Carlo

The role of electron correlations in the electronic structure of putative Chern magnet TbMn6Sn6

Quantum Monte Carlo pair orbital wave functions for periodic systems towards the thermodynamical limit: ground states, excitations and spinors

A new generation of effective core potentials from correlated and spin-orbit calculations: selected transition metals and Lanthanides

Lubos Mitas Information

University

Position

Distinguished University Professor

Citations(all)

12855

Citations(since 2020)

3925

Cited By

10462

hIndex(all)

53

hIndex(since 2020)

27

i10Index(all)

95

i10Index(since 2020)

63

Email

University Profile Page

Google Scholar

Lubos Mitas Skills & Research Interests

quantum Monte Carlo

electronic structure

computational physics

applied mathematics

Top articles of Lubos Mitas

Real space quantum Monte Carlo pair orbital wave functions for periodic systems: toward the thermodynamic limit

Bulletin of the American Physical Society

2024/3/7

Lubos Mitas
Lubos Mitas

H-Index: 28

Quantum Monte Carlo study of straintronic response of 2D materials: monolayer phosphorene and MoS2

Bulletin of the American Physical Society

2024/3/5

Jaroslav Fabian
Jaroslav Fabian

H-Index: 40

Lubos Mitas
Lubos Mitas

H-Index: 28

A new generation of effective core potentials: Selected lanthanides and heavy elements

The Journal of Chemical Physics

2024/2/28

Metals and Quantum Materials with Spin-orbit Interactions by Quantum Monte Carlo methods

2023/11/30

Lubos Mitas
Lubos Mitas

H-Index: 28

Colossal band gap response of single-layer phosphorene to strain predicted by quantum Monte Carlo

Physical Review Research

2023/9/28

The role of electron correlations in the electronic structure of putative Chern magnet TbMn6Sn6

npj Quantum Materials

2023/9/27

Abdulgani Annaberdiyev
Abdulgani Annaberdiyev

H-Index: 5

Lubos Mitas
Lubos Mitas

H-Index: 28

Quantum Monte Carlo pair orbital wave functions for periodic systems towards the thermodynamical limit: ground states, excitations and spinors

arXiv preprint arXiv:2309.15262

2023/9/26

Lubos Mitas
Lubos Mitas

H-Index: 28

A new generation of effective core potentials from correlated and spin-orbit calculations: selected transition metals and Lanthanides

The Journal of Chemical Physics

2022/8/7

Correlation consistent effective core potentials for late 3d transition metals adapted for plane wave calculations

The Journal of Chemical Physics

2022/11/7

Guangming Wang
Guangming Wang

H-Index: 2

Lubos Mitas
Lubos Mitas

H-Index: 28

Electronic structure of by fixed-node and fixed-phase diffusion Monte Carlo methods

Physical Review B

2022/8/15

Assessing the accuracy of compound formation energies with quantum Monte Carlo

Physical Review B

2022/6/21

Weighted nodal domain averages of eigenstates for quantum Monte Carlo and beyond

Chemical Physics

2022/5/1

Lubos Mitas
Lubos Mitas

H-Index: 28

Abdulgani Annaberdiyev
Abdulgani Annaberdiyev

H-Index: 5

Electronic structure of -RuCl by fixed-node and fixed-phase diffusion Monte Carlo methods

arXiv preprint arXiv:2203.15949

2022/3/29

A quantum Monte Carlo study of systems with effective core potentials and node nonlinearities

Chemical Physics

2022/2/1

High accuracy transition metal effective cores for the many-body diffusion Monte Carlo method

Journal of Chemical Theory and Computation

2022/1/10

Lubos Mitas
Lubos Mitas

H-Index: 28

Robust, Non-Perturbative Inclusion of Spin-Orbit Effects Into QMC.

2021/9/1

Cohesion and excitations of diamond-structure silicon by quantum Monte Carlo: Benchmarks and control of systematic biases

Physical Review B

2021/5/21

Optical excitations of α-RuCl3 using real-space quantum Monte Carlo

APS March Meeting Abstracts

2021

Fundamental Gap of Fluorographene by Many-Body GW and Diffusion Quantum Monte Carlo Methods

APS March Meeting Abstracts

2021

Lubos Mitas
Lubos Mitas

H-Index: 28

Quantum Monte Carlo of cohesion and excitations in diamond Si: benchmarks

APS March Meeting Abstracts

2021

See List of Professors in Lubos Mitas University(North Carolina State University)

Co-Authors

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