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New route to quantum spin liquid materials discovered

A new route to materials with complex disordered magnetic properties at the quantum level has been produced by scientists for the first time. The material, based on a framework of ruthenium, fulfills the requirements of the ...

Can the noble metals become superconductors?

Superconductivity is the phenomenon by which, at sufficiently low temperatures, electric current can flow in a metal with no resistance. While certain metals are excellent superconductors, other metals cannot superconduct ...

Quantum vortices confirm superfluidity in supersolid

Supersolids are a new form of quantum matter that has only recently been demonstrated. The state of matter can be produced artificially in ultracold, dipolar quantum gases. A team led by Innsbruck physicist Francesca Ferlaino ...

Revealing the superconducting limit of twisted bilayer graphene

Graphene is a simple material containing only a single layer of carbon atoms, but when two sheets of it are stacked together and offset at a slight angle, this twisted bilayer material produces numerous intriguing effects, ...

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General Physics
Stochastic thermodynamics may be key to understanding energy costs of computation
Condensed Matter
Polymer's long spin relaxation time helps researchers gain spintronic insights
Condensed Matter
How a classical computer beat a quantum computer at its own game
General Physics
Chromium-62 study helps researchers better understand shapes around islands of inversion
Condensed Matter
New machine learning model quickly and accurately predicts dielectric function
Condensed Matter
Scientists gain insight into the material defects that cause errors in quantum computing
Condensed Matter
Superconductivity researchers solve the mystery of Fermi arcs
Condensed Matter
Room-temperature nonreciprocal Hall effect could heat up future technology development
Condensed Matter
AI model improves 4D STEM imaging for delicate materials
Condensed Matter
Researchers succeed in taking 3D X-ray images of a skyrmion
Condensed Matter
Towards better solar cells: Exploring an anomalous phenomenon of electricity generation
Condensed Matter
Gold structures improve spin wave transfer to address electronics overheating problem
Condensed Matter
Key role of structural defects in amorphous solid deformation uncovered
Condensed Matter
Physicists report emergence of ferromagnetism at onset of Kondo breakdown in moiré bilayer lattices
Condensed Matter
Magnetic octupoles help overcome problems with antiferromagnets
Condensed Matter
Insulator-to-metal transition achieved in iridate/manganate heterostructures
Condensed Matter
Tesla-inspired method can control the direction of heat flow in graphite crystals
Condensed Matter
New light-induced material shows powerful potential for quantum applications
Condensed Matter
Researchers unveil pressure-tuned superconductivity in natural bulk heterostructure 6R-TaS₂
Condensed Matter
Spin-wave reservoir chips can enhance edge computing

Other news

Astronomy
Simulations reveal black holes inherit magnetic fields from parent stars
Nanophysics
Electron imaging reveals the vibrant colors of the outermost electron layer
Plants & Animals
Paper wasps study shows that body size is larger in habitats nearer the equator
Cell & Microbiology
Viscosity of materials key to cell differentiation: New insights could improve design of biomaterials
Astronomy
Egg-shaped galaxies may be aligned to the black holes at their hearts, astronomers find
Plants & Animals
In collective animal movements, speed matters—scientists use 'force map' to investigate fish schools
Astrobiology
Volcanic caves research advances the search for life on Mars
Biochemistry
First successful synthesis of elusive antibiotic compounds since their discovery 50 years ago
Polymers
Addressing key challenges of photoresponsive, visible light 3D printing
Astronomy
New study reveals possible origins of dark matter in 'Dark Big Bang' scenario
Astronomy
Theoretical astrophysicist proposes solution to enigma of Crab Nebula's 'zebra' pattern
Optics & Photonics
Neat, precise and brighter than ever: New technologies improve temporal coherence of XFEL pulses
Polymers
Transforming marine waste and carbonated water into hydrogels via CO₂ release behavior
Nanomaterials
Cracking the code of performance degradation in solid oxide cells at the atomic level
Planetary Sciences
Citizen scientists help explain magenta aurora over Japan
Cell & Microbiology
A single cell's siesta: How non-moving single-celled organisms manage to avoid bright light
Quantum Physics
A new method for creating a quantum gas
Ecology
Bee alert: Pesticides pose a real threat to more than 70% of wild bees
Evolution
Human brain organelles study shows dopamine neurons must work a lot harder than those in primate relatives
Astronomy
Astronomers discover a unique quasi-stellar object–dusty star-forming galaxy system

Topological phonons: Where vibrations find their twist

An international team of researchers has discovered that the quantum particles responsible for the vibrations of materials—which influence their stability and various other properties—can be classified through topology.

New study reveals phonon properties of β-MoB₂ single crystal

According to research published in Physical Review Research, a research team led by Prof. Luo Xuan from the Hefei Institutes of Physical Science of the Chinese Academy of Sciences discovered the existence of stacking faults ...

Physicists pioneer new quantum sensing platform

Quantum sensors detect the smallest of environmental changes—for example, an atom reacting to a magnetic field. As these sensors "read" the unique behaviors of subatomic particles, they also dramatically improve scientists' ...