World's Best Scientists 2026 revealed!

Overview

Louis Moresi is a researcher affiliated with the Australian National University in Australia. Their work primarily spans the domain of Earth and Planetary Sciences, with a focused expertise in Geophysics, evidenced by a substantial number of publications within this subfield. Complementary areas of study include Artificial Intelligence, Geochemistry and Petrology, Environmental Chemistry, and Computational Mechanics.

The scholar's research topics encompass a range of geological and computational themes. These include:

  • High-pressure geophysics and materials
  • Earthquake and tectonic studies
  • Geological and geochemical analysis
  • Methane hydrates and related phenomena
  • Geological modeling and analysis
  • Computational physics and Python applications
  • Fluid dynamics simulations and interactions

Frequently collaborating with other researchers, Louis Moresi has coauthored multiple papers with colleagues such as Romain Beucher, Rebecca Farrington, Haibin Yang, John Mansour, and Julian Giordani.

Their publication record includes contributions to various scientific journals and platforms. The most frequent venues for their publications are:

  • Tectonics
  • The Journal of Open Source Software
  • Scientific Reports
  • Geochemistry Geophysics Geosystems
  • Zenodo (CERN European Organization for Nuclear Research)

Significant recent papers authored or coauthored by Louis Moresi include:

  • Global quieting of high-frequency seismic noise due to COVID-19 pandemic lockdown measures, 2020, Science
  • Underworld2: Python Geodynamics Modelling for Desktop, HPC and Cloud, 2020, The Journal of Open Source Software
  • The effect of slab gaps on subduction dynamics and mantle upwelling, 2020, Tectonophysics
  • Coupled influence of tectonics, climate, and surface processes on landscape evolution in southwestern North America, 2022, Nature Communications
  • The Fingerprints of Flexure in Slab Seismicity, 2020, Tectonics

Best Publications

  • Role of temperature‐dependent viscosity and surface plates in spherical shell models of mantle convection

    Shijie Zhong;Maria T. Zuber;Louis Moresi;Michael Gurnis

  • Mantle convection with a brittle lithosphere: thoughts on the global tectonic styles of the Earth and Venus

    Louis Moresi;Louis Moresi;Viatcheslav Solomatov

  • Evolution and diversity of subduction zones controlled by slab width

    Wouter Pieter Schellart;Justin Freeman;David Robert Stegman;Louis-Noel Moresi

  • Scaling of time‐dependent stagnant lid convection: Application to small‐scale convection on Earth and other terrestrial planets

    Viatcheslav S Solomatov;Louis-Noel Moresi

  • Influence of trench width on subduction hinge retreat rates in 3‐D models of slab rollback

    David Robert Stegman;Justin Colin Freeman;Wouter Pieter Schellart;Louis-Noel Moresi

  • Constraints on the lateral strength of slabs from three-dimensional dynamic flow models

    Louis Moresi;Michael Gurnis

  • Global quieting of high-frequency seismic noise due to COVID-19 pandemic lockdown measures.

    Thomas Lecocq;Stephen P. Hicks;Koen Van Noten;Kasper van Wijk

  • A benchmark study on mantle convection in a 3-D spherical shell using CitcomS

    Shijie Zhong;Allen McNamara;Eh Tan;Louis Moresi

  • Stagnant lid convection on Venus

    V. S. Solomatov;L.-N. Moresi

  • Cretaceous vertical motion of australia and the australian- antarctic discordance

    Michael Gurnis;R. Dietmar Müller;Louis Moresi

  • Episodic Precambrian subduction

    Craig O'Neill;Adrian Lenardic;Louis-Noel Moresi;Trond Helge Torsvik;Trond Helge Torsvik

  • Dynamics of continental accretion

    Louis-Noel Moresi;Peter Graham Betts;Meghan Samantha Miller;Ross A Cayley

  • Computational approaches to studying non-linear dynamics of the crust and mantle

    L. Moresi;S. Quenette;V. Lemiale;C. Mériaux

  • India–Asia convergence driven by the subduction of the Greater Indian continent

    Fabio Capitanio;Gabriele Morra;Gabriele Morra;Saskia Goes;Roberto Weinberg

  • Longevity and stability of cratonic lithosphere: Insights from numerical simulations of coupled mantle convection and continental tectonics

    Adrian Lenardic;Louis-Noel Moresi;Hans Bernd Muhlhaus

  • A new driving mechanism for backarc extension and backarc shortening through slab sinking induced toroidal and poloidal mantle flow: Results from dynamic subduction models with an overriding plate

    Wouter Pieter Schellart;Louis-Noel Moresi

  • Some thoughts on the stability of cratonic lithosphere: Effects of buoyancy and viscosity

    A. Lenardic;L.-N. Moresi

  • Role of faults, nonlinear rheology, and viscosity structure in generating plates from instantaneous mantle flow models

    Shijie Zhong;Michael Gurnis;Louis Moresi

  • Formation of sequences in the cratonic interior of North America by interaction between mantle, eustatic, and stratigraphic processes

    Peter M. Burgess;Michael Gurnis;Louis Moresi

  • Heat transport efficiency for stagnant lid convection with dislocation viscosity: Application to Mars and Venus

    C. C. Reese;V. S. Solomatov;L.-N. Moresi

  • Fluid flow during slab unbending and dehydration: Implications for intermediate‐depth seismicity, slab weakening and deep water recycling

    Manuele Faccenda;Taras V Gerya;Neil S Mancktelow;Louis-Noel Moresi

Frequent Co-Authors

Meghan S. Miller
Meghan S. Miller Australian National University
Michael Gurnis
Michael Gurnis California Institute of Technology
Adrian Lenardic
Adrian Lenardic Rice University
Craig O'Neill
Craig O'Neill Macquarie University
Peter G Betts
Peter G Betts Monash University
R. Dietmar Müller
R. Dietmar Müller University of Sydney
Shijie Zhong
Shijie Zhong University of Colorado Boulder
Trond H. Torsvik
Trond H. Torsvik University of Oslo
Sabin Zahirovic
Sabin Zahirovic University of Sydney
Boris J. P. Kaus
Boris J. P. Kaus Johannes Gutenberg University of Mainz

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Exploring Earth Science in the USA opens doors to various related fields that can be pursued through online education. For seniors looking to expand their knowledge or shift careers, there are excellent options such as college degrees for seniors, which offer flexible learning tailored to adult students.

Library and information sciences intersect with Earth Science through data management and research support. Pursuing an online MLIS programs accredited ALA ensures quality education in this field, helping graduates develop skills to organize scientific information effectively.

For those interested in the archival or educational aspects of Earth Science, a degree in library science provides foundational knowledge for managing specialized collections and supporting scientific communities.

Visual documentation plays a vital role in Earth Science, making expertise in imaging a valuable asset. Students can pursue relevant skills through affordable creative programs, such as the photography degree online, which develops technical and artistic capabilities applied in environmental monitoring and public outreach.

Best Scientists Citing Louis Moresi

Trending Scientists