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Strain turns non-chiral crystals left- or right-handed on demand

Mechanical strain is one of the most common tools used to tailor the properties of materials. In piezoelectric materials, stretching or compressing a crystal generates an electrical polarization. In piezomagnetic materials, ...

Chocolate syrup-like fluid stores multiple interacting memories

Animals and electronic devices aren't the only things with memory. Materials can retain memories of past deformations in their microscopic structure. A common example is a crease in a sheet of paper that has been folded then ...

Engineers observe quantum heat waves at room temperature

Efficient heat management in solids is key to advancing the next generation of electronics. However, wave-like heat movement—known as phonon focusing—had been observed only at extremely low, or cryogenic, temperatures, limiting ...

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Condensed Matter
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Condensed Matter
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Condensed Matter
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Condensed Matter
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Condensed Matter
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Condensed Matter
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Condensed Matter
Twisted ultrathin magnet retains magnetization after field changes, study finds
Condensed Matter
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Condensed Matter
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General Physics
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General Physics
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Condensed Matter
Evidence of elusive high-energy chiral graviton excitations in quantum Hall systems
Condensed Matter
Metallic rutile oxides break the rules of cooling
Condensed Matter
Magnetic octupole model captures domain-wall motion in noncollinear antiferromagnets
Condensed Matter
Measuring iron in motion at Earth-core conditions
Condensed Matter
Ultra-compact sensor paves the way for more powerful and scalable silicon quantum processors
Condensed Matter
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Condensed Matter
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Condensed Matter
Optical writing of antiferromagnets points toward new storage devices and energy efficient information systems
Condensed Matter
Spontaneous current loops in a kagome metal point to hidden quantum order

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Molecular & Computational biology
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Astronomy
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Archaeology
Laid to rest with care: Ancient infants, perhaps twins, found in 1,200-year-old latrine
Environment
Climate change could dramatically reduce water flowing from the West's headwaters
Nanophysics
New microscopy method achieves angstrom-scale localization precision with one laser
Astronomy
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Evolution
Supergene solves evolutionary puzzle of mirror-image flowers
Biochemistry
Why some nitrogen-processing enzymes are more efficient than others
Nanomaterials
Smart sensor identifies present molecules by remembering the past
Education
AI use mirrors student schedules in study of 77,000 online learners
Molecular & Computational biology
Pine bark and sponge compounds could counter drug-resistant malaria and babesiosis
Archaeology
Brittany burial mounds may hide human-shaped stones as Coëby cemetery mystery deepens
Archaeology
Moonlight-like fur and feathers may explain Egyptian god Thoth's two animal forms
Plants & Animals
AI opens new era in cognitive studies of wild primates
Earth Sciences
Pacific cloud brightening could weaken El Nino, but models reveal risks for Europe and Asia
Quantum Physics
Quantum computer completes verified task beyond practical reach of classical simulations
Ecology
Insights into bee biology could ease US rules for organic honey
General Physics
Electron cooling tames highly charged ions in Penning trap for first time

Chiral phonons create orbital current via their own magnetism

In a new study, an international group of researchers has found that chiral phonons can create orbital current without needing magnetic elements—in part because chiral phonons have their own magnetic moments. Additionally, ...

Quantum 'alchemy' made feasible with excitons

What if you could create new materials just by shining a light at them? To most, this sounds like science fiction or alchemy, but to physicists investigating the burgeoning field of Floquet engineering, this is the goal. ...

Honeycomb lattice sweetens quantum materials development

Researchers at the Department of Energy's Oak Ridge National Laboratory are pioneering the design and synthesis of quantum materials, which are central to discovery science involving synergies with quantum computation. These ...