Physicists present new way to predict magnetic alloy properties with machine learning

Magnetic structure of a material. The colored spheres represent atoms and the arrows stand for their magnetic moments. The curved surface illustrates how the atoms assume the most energetically favorable…

Then and Now / 2012 Early Career Award Winner

WHAT DID THE 2012 EARLY CAREER AWARD ALLOW YOU TO DO? Newswise — Probing matter at large scales is done with telescopes, while probing it at small scales is done…

New study validates method for guided discovery of 3D flat-band materials

Rice University postdoctoral research associate Jianwei Huang with the laboratory apparatus he used to conduct angle-resolved photoemission spectroscopy experiments on a copper-vanadium alloy. The experiments showed the alloy is the…

The first observation of a material exhibiting a supersolid phase of matter

Introducing Sechrist’s Innovative eHEAL and 3300HM Hyperbaric Chamber

Newswise — ANAHEIM, Calif., Jan. 29, 2024 /PRNewswire/ — Sechrist Industries, a leader in hyperbaric technology, is proud to announce the launch of two groundbreaking products: eHEAL and the 3300HM Hyperbaric Chamber.…

Observing a new clock systematic shift

Atomic dipoles on a lattice interact to produce an observable spatially varying frequency shift (shown as blue to red). Credit: Steven Burrows/Ye Group In a new study published in Science…

Shaping the dawn of the quantum age

At the Garching campus, TUM researchers are helping to shape the era of quantum technology. Credit: Kai Neunert / BAdW Electrons that spin to the right and the left at…

Scientists show that quantum infrared spectroscopy can achieve ultra-broadband spectroscopic measurements

Quantum infrared spectroscopy using ultra-broadband entangled photons. Credit: KyotoU/Shigeki Takeuchi Our understanding of the world relies greatly on our knowledge of its constituent materials and their interactions. Recent advances in…

Team accomplishes precise measurements of the heaviest atoms

Discovery of high order skyrmions and antiskyrmions

Researchers at the University of Augsburg and the University of Vienna have discovered co-existing magnetic skyrmions and antiskyrmions of arbitrary topological charge at room temperature in magnetic Co/Ni multilayer thin…