Exploring the adaptive mesh refinement framework in astrophysical simulations.
James M. Stone, Patrick D. Mullen, Drummond Fielding
― 9 min read
Cutting edge science explained simply
Exploring the adaptive mesh refinement framework in astrophysical simulations.
James M. Stone, Patrick D. Mullen, Drummond Fielding
― 9 min read
Studying defects is key to improving halide perovskite device performance.
Viren Tyagi, Mike Pols, Geert Brocks
― 5 min read
Exploring the methods and challenges of electrodeposition at the nanoscale.
Shayantan Chaudhuri, Reinhard J. Maurer
― 9 min read
A new model enhances predictions of turbulent flows using machine learning.
Davide Oberto
― 5 min read
Adaptive frequency sampling methods improve antenna simulation efficiency and accuracy.
Lucas Åkerstedt, Darwin Blanco, B. L. G. Jonsson
― 5 min read
New model enhances accuracy for simulating surfactant effects in fluid dynamics.
Haohao Hao, Xiangwei Li, Tian Liu
― 6 min read
A fresh approach enhances our view of molecular interactions.
Fang Sun, Zijie Huang, Haixin Wang
― 6 min read
A new model improves accuracy while reducing computation time in fatigue fracture analysis.
Martha Kalina, Tom Schneider, Haim Waisman
― 6 min read
Examining how aluminum and silicon interact at their boundaries.
Yang Li, Raj K. Koju, Yuri Mishin
― 4 min read
This article examines missingness issues in simulation studies and offers practical solutions.
Samuel Pawel, František Bartoš, Björn S. Siepe
― 5 min read
A look at quantum simulation through the Quantum Ising Model.
Youning Li, Junfeng Huang, Chao Zhang
― 5 min read
Researchers enhance quantum simulation using TRG and HOTRG methods.
Michael Hite, Yannick Meurice
― 7 min read
Harnessing symmetry can enhance quantum simulations and improve our understanding of particles.
Victor M. Bastidas, Nathan Fitzpatrick, K. J. Joven
― 7 min read
A look into fluid dynamics methods for effective simulations and real-world applications.
Luca Crugnola, Christian Vergara
― 7 min read
Exploring the unique properties and behaviors of honeycomb lattice structures in materials science.
Welberth Kennedy, Sebastião dos Anjos Sousa-Júnior, Natanael C. Costa
― 6 min read
Learn how spring and mass models reveal material dynamics under stress.
Zbigniew Kozioł
― 7 min read
MixPI enhances simulations of tiny particles, bringing clarity to quantum interactions.
Britta A. Johnson, Siyu Bu, Christopher J. Mundy
― 8 min read
Discover how researchers handle negative weights in particle experiments using cell resampling.
Jeppe R. Andersen, Ana Cueto, Stephen P. Jones
― 7 min read
Buneman instability reveals complex interactions between electrons and ions in plasma.
I H Hutchinson
― 8 min read
Learn how data-driven designs improve controllers in large-scale systems.
Jiaping Liao, Shuaizheng Lu, Tao Wang
― 6 min read
Learn about the dynamics of K-type transition in supercritical fluids.
Pietro Carlo Boldini, Benjamin Bugeat, Jurriaan W. R. Peeters
― 5 min read
Learn how SBI helps scientists connect simulations with real-world data.
Jan Boelts, Michael Deistler, Manuel Gloeckler
― 5 min read
Researchers enhance water droplet simulations for realism and practical applications.
Hossein Keshtkar, Nadine Aburumman
― 9 min read
How hydrogen moves in materials affects many scientific fields.
Vladimir Kulagin, Rémi Delaporte-Mathurin, Etienne A. Hodille
― 7 min read
Introducing a new dataset for better anomaly detection in vehicles.
Lucas Correia, Jan-Christoph Goos, Thomas Bäck
― 7 min read
A look into double emulators and their role in enhancing simulator performance.
Conor Crilly, Oliver Johnson, Alexander Lewis
― 5 min read
We improve simulations of binary star systems and their interacting disks.
Lucas M. Jordan, Thomas Rometsch
― 6 min read
New methods improve driving scene synthesis for autonomous vehicle testing.
Zeyu Yang, Zijie Pan, Yuankun Yang
― 7 min read
CES offers improved accuracy and efficiency in simulating complex fluid dynamics.
Stefan Heinz, Adeyemi Fagbade
― 5 min read
A comparison of Q1STc and Q1STc+ in engineering scenarios.
Njomza Pacolli, Ahmad Awad, Jannick Kehls
― 6 min read
Learn how windowing techniques improve aerodynamic shape optimization for vehicles.
Steffen Schotthöfer, Beckett Y. Zhou, Tim Albring
― 7 min read
Discover a new method enhancing molecular dynamics simulations with improved efficiency.
Joe G Greener
― 6 min read
Discover how protected Delaunay meshes enhance data representation in higher dimensions.
David M. Williams, Mathijs Wintraecken
― 6 min read
A new approach combines quantum computing and deep learning to enhance particle simulations.
Ian Lu, Hao Jia, Sebastian Gonzalez
― 5 min read
A new method combines machine learning and quantum dynamics to study electron behavior.
Nicholas J. Boyer, Christopher Shepard, Ruiyi Zhou
― 7 min read
GRFsaw makes microstructure design accessible and efficient for engineers and scientists.
Lars Blatny, Henning Löwe, Johan Gaume
― 6 min read
Learn how predictive control enhances robot safety in complex environments.
William D. Compton, Max H. Cohen, Aaron D. Ames
― 7 min read
Learn how different methods improve accuracy in plasma simulations.
Opal Issan, Oleksandr Chapurin, Oleksandr Koshkarov
― 6 min read
New programming strategies enhance gas flow simulations efficiency and accuracy.
Yue Zhang, Yufeng Wei, Wenpei Long
― 8 min read
A deep dive into the complexities of strongly coupled gauge theories and their conformal window.
Anja Alfano, Nick Evans
― 6 min read