ON
← Back to feed
Striped or checkered? Magnetic field influences competing electronic patterns in a graphene-like quantum material
United Kingdom🔬 Science4 days ago

Striped or checkered? Magnetic field influences competing electronic patterns in a graphene-like quantum material

Researchers from the Okinawa Institute of Science and Technology (OIST) and Hiroshima University discovered that applying a small magnetic field can switch the electronic patterns in the quantum material CeTe₃ between striped and checkerboard configurations. Using scanning tunneling microscopy, they observed that cooling the material to near absolute zero revealed striped patterns, which transformed into checkerboard patterns under a magnetic field. The study, published in Nature Communications, highlights how magnetism can influence the organization of mobile electrons and localized spins in CeTe₃, offering insights into controlling collective electronic states in quantum materials.

How each side covered it

The same event, grouped by the political lean of the outlets covering it.

How each side covered it

Support independent, bias-aware news and unlock the social pulse, community voting, and your personalized For You feed.

Become a Supporter

Covered around the world

The same event as reported in other countries.

Covered around the world

Support independent, bias-aware news and unlock the social pulse, community voting, and your personalized For You feed.

Become a Supporter

Claims check

Key factual claims, and how many sources assert vs dispute each.

Claims check

Support independent, bias-aware news and unlock the social pulse, community voting, and your personalized For You feed.

Become a Supporter

Go to the primary sources (2)

The official sources this coverage is built on. Read them directly to bypass framing.

1 reports

Phys.org logoPhys.orgIndependentCenter4 days ago
Striped or checkered? Magnetic field influences competing electronic patterns in a graphene-like quantum material

Researchers from the Okinawa Institute of Science and Technology (OIST) and Hiroshima University discovered that applying a small magnetic field can switch the electronic patterns in the quantum material CeTe₃ between striped and checkerboard configurations. Using scanning tunneling microscopy, they observed that cooling the material to near absolute zero revealed striped patterns, which transformed into checkerboard patterns under a magnetic field. The study, published in Nature Communications, highlights how magnetism can influence the organization of mobile electrons and localized spins in CeTe₃, offering insights into controlling collective electronic states in quantum materials.

Bias read (Center): The article presents scientific findings without political implications. It focuses on a physics experiment and its implications for quantum materials research, using neutral language and avoiding any ideological framing.

Keep the news honest.

ObjectiveNews is reader-funded and ad-free — we show you the bias instead of hiding it. Support independent journalism for €5/month.

Become a Supporter

Related stories