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A small squeeze reveals new clues about an unusual kind of magnet

Researchers at Rice University have found that gently squeezing a crystal of iron sulfide can change two of its unusual properties at the same time: its tiny magnetic signal and the way electricity moves through it. The result ...

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Condensed Matter
Real-time measurements reveal antiferromagnetic skyrmions move in line with an applied current
Condensed Matter
Physicists watch a material's electrons assemble, and reassemble, into coexisting phases
General Physics
Tiny floating magnet detects ultrafaint magnetic fields at room temperature
Condensed Matter
Boron layers could set a superconductivity record, theoretical study predicts
Condensed Matter
Researchers demonstrate first fully solution-processed solid-state polariton laser
Condensed Matter
Never-before-seen woven structure that forms naturally inside a crystal discovered
Condensed Matter
New semiconductor maser operates continuously above room temperature
Condensed Matter
Electric field reverses phonon chirality and spin direction in ferroelectric crystal
Condensed Matter
Quantum fluid reveals hidden states that can be switched with a magnetic field
Condensed Matter
Light controls nanoscale 'bubble' domains in a ferroelectric crystal
Condensed Matter
Unusual metal oxide shows signs of magnetism under lattice strain in ultrathin layers
Condensed Matter
New photonic platform offers a four-lane highway for light
Condensed Matter
Two independent studies push semiconductor qubits towards practical scales
Condensed Matter
Optimized magnetic pulses could cut memory switching energy by several orders of magnitude
General Physics
New open-source software predicts energy transfer between tiny defects in solid materials
Condensed Matter
Physicists create Bose–Einstein condensate from ultracold polar molecules
Condensed Matter
Electrically controlled magnetic switching shows promise for next-gen cryogenic devices
Condensed Matter
Quantum spin effects may enhance one-way electrical transport in chiral magnets
Condensed Matter
2D quantum memory device reaches single-electron limit of information storage
Condensed Matter
First electrically pumped perovskite polariton laser diode solves a decades-long challenge

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Cell & Microbiology
Protein degradation rate helps explain why humans develop more slowly than mice
Social Sciences
Collaborative drawing offers new insights into how strangers become friends
Molecular & Computational biology
Oldest human brain cells grown in lab 'recorded passage of time'
Quantum Physics
Quantum computer microscope is set to significantly improve electron microscopy
Plants & Animals
Hot temperatures can dull blue morpho butterflies' iridescent scales
Materials Science
Blowing in the wind, humble balloon gets green makeover
Archaeology
A museum-shelf mystery reveals 6,500-year-old human tooth pendant in Serbia
Analytical Chemistry
Computer models pinpoint catalysts for replacing fossil-fueled ammonia production
Biotechnology
AI decodes DNA initiator sequence found in about 60% of human genes
Space Exploration
Near-total lunar eclipse is coming up with the Americas in prime position
Evolution
Animal genomes follow irreversible 'evolutionary highways' across thousands of species
Bio & Medicine
The dynamic duo: 'Weaving' hierarchical DNA materials with two classes of biomolecular nanomachines
Earth Sciences
AI mapping reveals hidden stage of Arctic freeze with climate implications
Earth Sciences
Thawing Arctic riverbeds may erode up to 10 times faster than unfrozen ground
General Physics
LHC collisions reveal oxygen and neon's shifting nuclear geometry
Mathematics
More than half of adults in US say they lack basic statistical understanding
Space Exploration
Interplanetary spacecraft capture a coronal mass ejection component hidden from Earth
Archaeology
Archaeologists uncover 11 rare marked arrowheads at Tepecik-Çiftlik whose purpose remains a mystery
Optics & Photonics
Laser-cut aluminum foil could replace costly terahertz polarizers
Earth Sciences
Thunderquakes enable seismic imaging of Earth's shallow subsurface

How superconductivity arises: New insights from moiré materials

How exactly unconventional superconductivity arises is one of the central questions of modern solid-state physics. A new study published in the journal Nature provides crucial insights into this question. For the first time, ...

Using duality to construct and classify new quantum phases

A team of theoretical researchers has found duality can unveil non-invertible symmetry protected topological phases, which can lead to researchers understanding more about the properties of these phases, and uncover new quantum ...