#computationalphysics search results

A student was having trouble with a Wang-Landau calculation of the 2D Ising Model. I last touched my code in 2010. I got it out of mothballs and working. 24 x 24 array of spins. Log scales just do not convey the dearth of states outside of the middle. #computationalPhysics

nuclear94's tweet image. A student was having trouble with a Wang-Landau calculation of the 2D Ising Model. I last touched my code in 2010. I got it out of mothballs and working. 24 x 24 array of spins. Log scales just do not convey the dearth of states outside of the middle. #computationalPhysics
nuclear94's tweet image. A student was having trouble with a Wang-Landau calculation of the 2D Ising Model. I last touched my code in 2010. I got it out of mothballs and working. 24 x 24 array of spins. Log scales just do not convey the dearth of states outside of the middle. #computationalPhysics

A couple of my #computationalPhysics students were having a hard time animating their 2D Ising Model calculations. I wrote this little ditty based upon @twostraws Rain Drop code based on TimelineView and Canvas in SwiftUI. Not too bad.


💡Thought Leadership - 𝗔𝗱𝗱𝗿𝗲𝘀𝘀𝗶𝗻𝗴 𝘁𝗵𝗲 𝗖𝗵𝗮𝗹𝗹𝗲𝗻𝗴𝗲𝘀 𝗼𝗳 𝗗𝗲𝘀𝗶𝗴𝗻𝗶𝗻𝗴 𝗖𝗼𝗺𝗽𝗹𝗲𝘅 𝗦𝘆𝘀𝘁𝗲𝗺𝘀. Read the first in our new Blog article series: firstlightfusion.com/media/thought-… #ComputationalPhysics #ComplexModelling #AI #FusionEnergy #DataScience

FLFusion's tweet image. 💡Thought Leadership - 𝗔𝗱𝗱𝗿𝗲𝘀𝘀𝗶𝗻𝗴 𝘁𝗵𝗲 𝗖𝗵𝗮𝗹𝗹𝗲𝗻𝗴𝗲𝘀 𝗼𝗳 𝗗𝗲𝘀𝗶𝗴𝗻𝗶𝗻𝗴 𝗖𝗼𝗺𝗽𝗹𝗲𝘅 𝗦𝘆𝘀𝘁𝗲𝗺𝘀.

Read the first in our new Blog article series: firstlightfusion.com/media/thought-…

#ComputationalPhysics #ComplexModelling #AI #FusionEnergy #DataScience

Efficient tensor network simulation of IBM's largest quantum processors, Siddhartha Patra, Saeed S. Jahromi, Sukhbinder Singh, and Román Orús #ComputationalPhysics #Quantum go.aps.org/4alMbnc

PhysRevResearch's tweet image. Efficient tensor network simulation of IBM's largest quantum processors, Siddhartha Patra, Saeed S. Jahromi, Sukhbinder Singh, and Román Orús #ComputationalPhysics #Quantum go.aps.org/4alMbnc

From virtual to reality: A practical route to design new materials, S. Arapan, P. Nieves, J. Šebesta, A. Dzubinska, M. Reiffers, M. Fabián, K. Arun, and D. Legut #Materials #ComputationalPhysics go.aps.org/3vLf0uy

PhysRevResearch's tweet image. From virtual to reality: A practical route to design new materials, S. Arapan, P. Nieves, J. Šebesta, A. Dzubinska, M. Reiffers, M. Fabián, K. Arun, and D. Legut #Materials #ComputationalPhysics go.aps.org/3vLf0uy

Can we manipulate invisible forces? #computationalphysics #nanomagnetism Magnetic patterning is one example. It is part of what I do for my research. - generating data (#julialang) - visualizing data (#juliaplots) - analyzing & understanding patterns - devise manipulation…

juliaifrank's tweet image. Can we manipulate invisible forces? 
#computationalphysics #nanomagnetism

Magnetic patterning is one example.

It is part of what I do for my research. 

- generating data  (#julialang)
- visualizing data (#juliaplots)
- analyzing & understanding patterns
- devise manipulation…

The IUPAP Commission on #ComputationalPhysics - C20 seeks nominations for its 2023 IUPAP Early Career Scientist Prize in Computational Physics. The deadline for submission of nominations is May 31, 2023. More info: bit.ly/3Z8CmCV

IUPAP_physics's tweet image. The IUPAP Commission on #ComputationalPhysics - C20 seeks nominations for its 2023 IUPAP Early Career Scientist Prize in Computational Physics. The deadline for submission of nominations is May 31, 2023. More info: bit.ly/3Z8CmCV

Our latest research on enhancing #DSMC simulations has now been published! We've introduced a new technique that significantly reduces calculation time for #vacuum gas dynamics studies while maintaining accuracy🚀. 🔗iopscience.iop.org/article/10.108… #ComputationalPhysics #CFD #Simulation

_AminEbrahimi_'s tweet image. Our latest research on enhancing #DSMC simulations has now been published! We've introduced a new technique that significantly reduces calculation time for #vacuum gas dynamics studies while maintaining accuracy🚀. 
🔗iopscience.iop.org/article/10.108…
#ComputationalPhysics #CFD #Simulation

Noise-cancellation algorithm for simulations of Brownian particles, Regina Rusch, Thomas Franosch, and Gerhard Jung #ComputationalPhysics go.aps.org/3S36KgM

PhysRevE's tweet image. Noise-cancellation algorithm for simulations of Brownian particles, Regina Rusch, Thomas Franosch, and Gerhard Jung #ComputationalPhysics go.aps.org/3S36KgM

Load balancing for high performance computing using quantum annealing, Omer Rathore, Alastair Basden, Nicholas Chancellor, and Halim Kusumaatmaja #Quantum #ComputationalPhysics go.aps.org/4jri3vR

PhysRevResearch's tweet image. Load balancing for high performance computing using quantum annealing, Omer Rathore, Alastair Basden, Nicholas Chancellor, and Halim Kusumaatmaja #Quantum #ComputationalPhysics go.aps.org/4jri3vR

Pulse engineering via projection of response functions, Nicolas Heimann, Lukas Broers, and Ludwig Mathey #Quantum #ComputationalPhysics go.aps.org/4hsTsoG

PhysRevResearch's tweet image. Pulse engineering via projection of response functions, Nicolas Heimann, Lukas Broers, and Ludwig Mathey #Quantum #ComputationalPhysics go.aps.org/4hsTsoG

Accelerating optimal elemental configuration search in crystal using Ising machine, Kazuhide Ichikawa, Satoru Ohuchi, Koki Ueno, and Tomoyasu Yokoyama @Kaz_Ichikawa_ @yoko_materialDX #CondensedMattter #ComputationalPhysics go.aps.org/4ei1Ia8

PhysRevResearch's tweet image. Accelerating optimal elemental configuration search in crystal using Ising machine, Kazuhide Ichikawa, Satoru Ohuchi, Koki Ueno, and Tomoyasu Yokoyama @Kaz_Ichikawa_ @yoko_materialDX #CondensedMattter #ComputationalPhysics go.aps.org/4ei1Ia8

CESPED: A benchmark for supervised particle pose estimation in cryo-EM. Authors: Ruben Sanchez-Garcia, Michael Saur, Javier Vargas, Carl Poelking, and Charlotte M. Deane. go.aps.org/4aOoKTn #AtomicPhysics #ComputationalPhysics

PhysRevResearch's tweet image. CESPED: A benchmark for supervised particle pose estimation in cryo-EM. Authors: Ruben Sanchez-Garcia, Michael Saur, Javier Vargas, Carl Poelking, and Charlotte M. Deane. go.aps.org/4aOoKTn

#AtomicPhysics #ComputationalPhysics

Global sampling of Feynman's diagrams through normalizing flow, Luca Leoni and Cesare Franchini @TACO_Oxides @Luca_Leoni_99 #ComputationalPhysics #Fluids go.aps.org/4bC3IaM

PhysRevResearch's tweet image. Global sampling of Feynman's diagrams through normalizing flow, Luca Leoni and Cesare Franchini   @TACO_Oxides @Luca_Leoni_99   #ComputationalPhysics #Fluids go.aps.org/4bC3IaM

Energy, temperature, and heat capacity in discrete classical dynamics, Søren Toxvaerd #ComputationalPhysics #MolecularDynamics go.aps.org/4b7ISRM

PhysRevE's tweet image. Energy, temperature, and heat capacity in discrete classical dynamics, Søren Toxvaerd #ComputationalPhysics #MolecularDynamics go.aps.org/4b7ISRM

Simulating Phase Change Heat Transfer Using COMSOL and FLUENT: Effect of the Mushy-Zone Constant dl.begellhouse.com/journals/64819… #HeatTransfer #ComputationalPhysics #MaterialsEngineering

BegellHouse's tweet image. Simulating Phase Change Heat Transfer Using COMSOL and FLUENT: Effect of the Mushy-Zone Constant

dl.begellhouse.com/journals/64819…

#HeatTransfer #ComputationalPhysics #MaterialsEngineering

💡Thought Leadership - 𝗔𝗱𝗱𝗿𝗲𝘀𝘀𝗶𝗻𝗴 𝘁𝗵𝗲 𝗖𝗵𝗮𝗹𝗹𝗲𝗻𝗴𝗲𝘀 𝗼𝗳 𝗗𝗲𝘀𝗶𝗴𝗻𝗶𝗻𝗴 𝗖𝗼𝗺𝗽𝗹𝗲𝘅 𝗦𝘆𝘀𝘁𝗲𝗺𝘀. Read the first in our new Blog article series: firstlightfusion.com/media/thought-… #ComputationalPhysics #ComplexModelling #AI #FusionEnergy #DataScience

FLFusion's tweet image. 💡Thought Leadership - 𝗔𝗱𝗱𝗿𝗲𝘀𝘀𝗶𝗻𝗴 𝘁𝗵𝗲 𝗖𝗵𝗮𝗹𝗹𝗲𝗻𝗴𝗲𝘀 𝗼𝗳 𝗗𝗲𝘀𝗶𝗴𝗻𝗶𝗻𝗴 𝗖𝗼𝗺𝗽𝗹𝗲𝘅 𝗦𝘆𝘀𝘁𝗲𝗺𝘀.

Read the first in our new Blog article series: firstlightfusion.com/media/thought-…

#ComputationalPhysics #ComplexModelling #AI #FusionEnergy #DataScience

PhD in Computational Physics at Umeå University, Sweden. Project on simulation and AI for field robotics and autonomous vehicles. Apply by 15 Nov 2025. #PhD #ComputationalPhysics #AI #Robotics #AutonomousVehicles #Sweden #UmeaUniversity umu.se/en/work-with-u…


This isn’t a simulation. Classical computers can’t crunch it. Quantum processors are turning into labs for discovering whole new phases of matter. #QuantumLab #ComputationalPhysics #AIResearch #QuantumMechanics #TechFrontiers #TheycalllHimOG #ถนนทรุดตัว #MFW


A must-read for those in functional analysis, numerical methods, or quantum physics! Available in the uploaded PDF. #ComputationalPhysics #QuantumComputing #QuantumMechanics #ComputationalFluidDynamics #MachineLearning #OperatorTheory #SpectralTheory #NumericalMethods #NewMath


📢 Postdoc Opportunity (F/M) – Computational design of next-gen optical metasurfaces @ Inria Centre Université Côte d’Azur, Sophia Antipolis 🇫🇷 📅 Start: Feb 1, 2025 | Apply by: Jun 30, 2026 #Postdoc #Nanophotonics #ComputationalPhysics #Metasurfaces jobs.inria.fr/public/classic…


TETRIS-ADAPT-VQE: An adaptive algorithm that yields shallower, denser circuit Ansätze, Panagiotis G. Anastasiou, Yanzhu Chen, Nicholas J. Mayhall, Edwin Barnes, and Sophia E. Economou #ComputationalPhysics #Quantum go.aps.org/3v4Lhws

PhysRevResearch's tweet image. TETRIS-ADAPT-VQE: An adaptive algorithm that yields shallower, denser circuit Ansätze, Panagiotis G. Anastasiou, Yanzhu Chen, Nicholas J. Mayhall, Edwin Barnes, and Sophia E. Economou #ComputationalPhysics #Quantum go.aps.org/3v4Lhws

Efficient tensor network simulation of IBM's largest quantum processors, Siddhartha Patra, Saeed S. Jahromi, Sukhbinder Singh, and Román Orús #ComputationalPhysics #Quantum go.aps.org/4alMbnc

PhysRevResearch's tweet image. Efficient tensor network simulation of IBM's largest quantum processors, Siddhartha Patra, Saeed S. Jahromi, Sukhbinder Singh, and Román Orús #ComputationalPhysics #Quantum go.aps.org/4alMbnc

From virtual to reality: A practical route to design new materials, S. Arapan, P. Nieves, J. Šebesta, A. Dzubinska, M. Reiffers, M. Fabián, K. Arun, and D. Legut #Materials #ComputationalPhysics go.aps.org/3vLf0uy

PhysRevResearch's tweet image. From virtual to reality: A practical route to design new materials, S. Arapan, P. Nieves, J. Šebesta, A. Dzubinska, M. Reiffers, M. Fabián, K. Arun, and D. Legut #Materials #ComputationalPhysics go.aps.org/3vLf0uy

Quantum reservoir computing in finite dimensions, Rodrigo Martínez-Peña and Juan-Pablo Ortega @IFISC_mallorca @NTUsg #Quantum #StatisticalPhysics #ComputationalPhysics go.aps.org/40BqI4L

PhysRevE's tweet image. Quantum reservoir computing in finite dimensions, Rodrigo Martínez-Peña and Juan-Pablo Ortega @IFISC_mallorca @NTUsg #Quantum #StatisticalPhysics #ComputationalPhysics go.aps.org/40BqI4L

(2/9)📚 From deep dives into #ComputationalPhysics and #Astrophysics to exploring #DataAnalysis and #MachineLearning in #DevelopmentalBiology, our lectures were nothing short of enlightening. Students soaked in knowledge like sponges! #EPIC4 #deeplearning

CienciaLatitud0's tweet image. (2/9)📚 From deep dives into #ComputationalPhysics and #Astrophysics to exploring #DataAnalysis and #MachineLearning in #DevelopmentalBiology, our lectures were nothing short of enlightening. Students soaked in knowledge like sponges! #EPIC4 #deeplearning

Variational Monte Carlo algorithm for lattice gauge theories with continuous gauge groups: A study of (2+1)-dimensional compact QED with dynamical fermions at finite density,Julian Bender, Patrick Emonts, and J. Ignacio Cirac #ComputationalPhysics #Quantum go.aps.org/46Zay8Q

PhysRevResearch's tweet image. Variational Monte Carlo algorithm for lattice gauge theories with continuous gauge groups: A study of (2+1)-dimensional compact QED with dynamical fermions at finite density,Julian Bender, Patrick Emonts, and J. Ignacio Cirac #ComputationalPhysics #Quantum go.aps.org/46Zay8Q

Quantum Monte Carlo algorithm for arbitrary spin-1/2 Hamiltonians, Lev Barash, Arman Babakhani, and Itay Hen #Quantum #ComputationalPhysics #CondensedMatter #Materials go.aps.org/43lsERi

PhysRevResearch's tweet image. Quantum Monte Carlo algorithm for arbitrary spin-1/2 Hamiltonians, Lev Barash, Arman Babakhani, and Itay Hen #Quantum #ComputationalPhysics #CondensedMatter #Materials go.aps.org/43lsERi

Accelerating optimal elemental configuration search in crystal using Ising machine, Kazuhide Ichikawa, Satoru Ohuchi, Koki Ueno, and Tomoyasu Yokoyama @Kaz_Ichikawa_ @yoko_materialDX #CondensedMattter #ComputationalPhysics go.aps.org/4ei1Ia8

PhysRevResearch's tweet image. Accelerating optimal elemental configuration search in crystal using Ising machine, Kazuhide Ichikawa, Satoru Ohuchi, Koki Ueno, and Tomoyasu Yokoyama @Kaz_Ichikawa_ @yoko_materialDX #CondensedMattter #ComputationalPhysics go.aps.org/4ei1Ia8

Energy, temperature, and heat capacity in discrete classical dynamics, Søren Toxvaerd #ComputationalPhysics #MolecularDynamics go.aps.org/4b7ISRM

PhysRevE's tweet image. Energy, temperature, and heat capacity in discrete classical dynamics, Søren Toxvaerd #ComputationalPhysics #MolecularDynamics go.aps.org/4b7ISRM

Quantum-inspired fluid simulation of two-dimensional turbulence with GPU acceleration, Leonhard Hölscher et al #Fluids #Quantum #ComputationalPhysics go.aps.org/42Txo2L

PhysRevResearch's tweet image. Quantum-inspired fluid simulation of two-dimensional turbulence with GPU acceleration, Leonhard Hölscher et al #Fluids #Quantum #ComputationalPhysics go.aps.org/42Txo2L

Noise-cancellation algorithm for simulations of Brownian particles, Regina Rusch, Thomas Franosch, and Gerhard Jung #ComputationalPhysics go.aps.org/3S36KgM

PhysRevE's tweet image. Noise-cancellation algorithm for simulations of Brownian particles, Regina Rusch, Thomas Franosch, and Gerhard Jung #ComputationalPhysics go.aps.org/3S36KgM

Miroslav Kolos & Jiří Kalmár took part in the VASP Workshop 2025 in Rennes 🇫🇷 – lectures & hands-on sessions on electronic structure & materials modeling. Thanks for representing our team! 👏 Supported by LERCO & SGS01/PŘF/2025. #VASP #computationalphysics #LERCO @Prf_Ostravska

nano_osu's tweet image. Miroslav Kolos & Jiří Kalmár took part in the VASP Workshop 2025 in Rennes 🇫🇷 – lectures & hands-on sessions on electronic structure & materials modeling.
Thanks for representing our team! 👏
Supported by LERCO & SGS01/PŘF/2025.
#VASP #computationalphysics #LERCO @Prf_Ostravska

Global sampling of Feynman's diagrams through normalizing flow, Luca Leoni and Cesare Franchini @TACO_Oxides @Luca_Leoni_99 #ComputationalPhysics #Fluids go.aps.org/4bC3IaM

PhysRevResearch's tweet image. Global sampling of Feynman's diagrams through normalizing flow, Luca Leoni and Cesare Franchini   @TACO_Oxides @Luca_Leoni_99   #ComputationalPhysics #Fluids go.aps.org/4bC3IaM

Editors' Suggestion: Monte Carlo generation of localized particle trajectories, Ivan Ahumada and James P. Edwards #ComputationalPhysics go.aps.org/3NXvx4H

PhysRevE's tweet image. Editors' Suggestion: Monte Carlo generation of localized particle trajectories, Ivan Ahumada and James P. Edwards #ComputationalPhysics go.aps.org/3NXvx4H

DISCOVER: Deep identification of symbolically concise open-form partial differential equations via enhanced reinforcement learning, Mengge Du, Yuntian Chen, and Dongxiao Zhang #ComputationalPhysics #NonlinearDynamics go.aps.org/3UNIfa5

PhysRevResearch's tweet image. DISCOVER: Deep identification of symbolically concise open-form partial differential equations via enhanced reinforcement learning, Mengge Du, Yuntian Chen, and Dongxiao Zhang #ComputationalPhysics #NonlinearDynamics go.aps.org/3UNIfa5

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