• Home
  • About
  • Contact us
Tech News, Magazine & Review WordPress Theme 2017
  • Computing
  • Entertainment
  • Gaming
  • Mobile
  • Science
  • Security
  • Services
  • Software
  • Space
No Result
View All Result
  • Computing
  • Entertainment
  • Gaming
  • Mobile
  • Science
  • Security
  • Services
  • Software
  • Space
Technovanguard — Be at the forefront of technology news
No Result
View All Result

Light-Matter Interactions Simulated on Fugaku Supercomputer

Justin Rowell by Justin Rowell
29.09.2022
Home Computing

Researchers led by the University of Tsukuba present an improved way to model interactions between matter and light at the atomic scale

TSUKUBA, Japan, Jan. 10, 2022 — Light-matter interactions form the basis of many important technologies, including lasers, light-emitting diodes (LEDs), and atomic clocks. However, usual computational approaches for modeling such interactions have limited usefulness and capability. Now, researchers from Japan have developed a technique that overcomes these limitations.

The Fugaku supercomputer.

In a study published this month in The International Journal of High Performance Computing Applications, a research team led by the University of Tsukuba describes a highly efficient method for simulating light-matter interactions at the atomic scale.

What makes these interactions so difficult to simulate? One reason is that phenomena associated with the interactions encompass many areas of physics, involving both the propagation of light waves and the dynamics of electrons and ions in matter. Another reason is that such phenomena can cover a wide range of length and time scales.

Given the multiphysics and multiscale nature of the problem, light-matter interactions are typically modeled using two separate computational methods. The first is electromagnetic analysis, whereby the electromagnetic fields of the light are studied; the second is a quantum-mechanical calculation of the optical properties of the matter. But these methods assume that the electromagnetic fields are weak and that there is a difference in the length scale.

“Our approach provides a unified and improved way to simulate light-matter interactions,” says senior author of the study Professor Kazuhiro Yabana. “We achieve this feat by simultaneously solving three key physics equations: the Maxwell equation for the electromagnetic fields, the time-dependent Kohn-Sham equation for the electrons, and the Newton equation for the ions.”

The researchers implemented the method in their in-house software SALMON (Scalable Ab initio Light-Matter simulator for Optics and Nanoscience), and they thoroughly optimized the simulation computer code to maximize its performance. They then tested the code by modeling light-matter interactions in a thin film of amorphous silicon dioxide, composed of more than 10,000 atoms. This simulation was carried out using almost 28,000 nodes of the fastest supercomputer in the world, Fugaku, at the RIKEN Center for Computational Science in Kobe, Japan.

“We found that our code is extremely efficient, achieving the goal of one second per time step of the calculation that is needed for practical applications,” says Professor Yabana. “The performance is close to its maximum possible value, set by the bandwidth of the computer memory, and the code has the desirable property of excellent weak scalability.”

Although the team simulated light-matter interactions in a thin film in this work, their approach could be used to explore many phenomena in nanoscale optics and photonics.

This research was supported by MEXT as a priority issue (theme 7) to be tackled using the Post-K Computer; by JST-CREST (grant number JP-MJCR16N5); and by the MEXT Quantum Leap Flagship Program (MEXT Q-LEAP, grant number JPMXS0118068681).

Original Paper

The article, “Large-scale ab initio simulation of light-matter interaction at the atomic scale in Fugaku,” was published in The International Journal of High Performance Computing Applications at DOI: https://doi.org/10.1177/10943420211065723.

Source: University of Tsukuba

The post Light-Matter Interactions Simulated on Fugaku Supercomputer appeared first on Technovanguard.


Next Post
What is the Arecibo Message?

What is the Arecibo Message?

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Recommended.

Expert: Risk of nuclear war over Ukraine is low

Expert: Risk of nuclear war over Ukraine is low

29.09.2022
Apple Fitness+ intros Collections, Time to Run, and more starting January 10th

Apple Fitness+ intros Collections, Time to Run, and more starting January 10th

29.09.2022

Trending.

Netflix’s vampire movie Day Shift adds real bite to a classic action throwback

Netflix’s vampire movie Day Shift adds real bite to a classic action throwback

30.03.2023
Eight Irish researchers bag starter grants from European Research Council

Eight Irish researchers bag starter grants from European Research Council

29.09.2022
Staying Ahead of the Game: The Top 10 Most Popular Websites for IT and Modern Technology

Staying Ahead of the Game: The Top 10 Most Popular Websites for IT and Modern Technology

30.01.2023
Travel Business and Content Marketing: A Match Made in Heaven

Travel Business and Content Marketing: A Match Made in Heaven

07.02.2023
Join MDM for a holiday happy hour in Austin on December 16th

Join MDM for a holiday happy hour in Austin on December 16th

29.09.2022
Technovanguard — Be at the forefront of technology news

Technovanguard - The latest news from the world of IT and modern technologies.

Categories

  • Computing
  • Entertainment
  • Gaming
  • Internet
  • Mobile
  • Science
  • Security
  • Services
  • Software
  • Space
  • Без рубрики

Tags

best bitcoin casino best bitcoin gambling site best crypto casino bitcoin gambling site btc casino FEATUREDNEWS linkedin connection message linkedin connection request template linkedin connect message examples linkedin networking message template linkedin sales message top bitcoin casinos

Recent News

Ukrainian Soldier on Prosthesis to Participate in 2023 TCS London Marathon

Ukrainian Soldier on Prosthesis to Participate in 2023 TCS London Marathon

28.03.2023
Talents on AI: Kyiv to Host Three-Day Hackathon Connecting Developers and Sponsors in May 2023

Talents on AI: Kyiv to Host Three-Day Hackathon Connecting Developers and Sponsors in May 2023

07.03.2023
  • Home
  • About
  • Contact us

© 2021 technovanguard.com. Submit news release

No Result
View All Result
  • Computing
  • Entertainment
  • Gaming
  • Mobile
  • Science
  • Security
  • Services
  • Software
  • Space

© 2021 technovanguard.com. Submit news release