Last update:

Nuclear clocks tick for the first time

Two independent research teams have achieved a longstanding goal in physics: building a working nuclear clock. The devices, developed by Beichen Huang and colleagues at Tsinghua University and by Luca Toscani De Col and colleagues ...

More news

General Physics
Collapsing stars could spawn mini-universes, offering new path to gravastars
General Physics
New art test could help museums spot fake Van Goghs without touching paintings
General Physics
An underground detector in China unveils its first major findings about mysterious ghost particles
General Physics
To discover new physics, AI may need to 'unlearn' the old one
General Physics
Precision measurement under impact—when the balance itself becomes the object of measurement
General Physics
Neutron-rich nuclei yield beta-decay clues that could refine heavy-element origin models
General Physics
Newfound sound wave scattering rule may lead to less bulky, more effective soundproofing
General Physics
Physicists create new family of Schrödinger-cat states
General Physics
Tabletop experiment helps reconcile fundamental physics
General Physics
MLB swing-tracking data helps researchers examine baseball's long-debated two-strike approach
General Physics
Quantum circuits help AI overcome memory limitations with minimal new parameters
General Physics
Critical Te-104 decay measurements may help answer century-old alpha particle formation question
General Physics
Physicists discover attractive forces between molecular condensates may cause running off
General Physics
Quantum shell structure reveals new rule for proton-neutron pairing inside nuclei
General Physics
Measuring gravitational waves in a humming universe with a coordinate-free approach
General Physics
New X-ray method captures solid-liquid interfaces and bulk liquids simultaneously
General Physics
Violating the 3rd law of black hole mechanics in vacuum gravity
General Physics
Portable UV spectrometer can detect air pollutants across 2.5 km with high precision
General Physics
Out-of-plane ice bridges reveal new way to suppress frost spreading
General Physics
Molecular glasses solve long-standing Arrhenius paradox

Other news

Nanophysics
Liquid ripples rewrite 130-year-old biological classic: New reflections on the lock-and-key model
Polymers
Contact lenses can repair themselves with just one hour of UV light exposure
Economics & Business
Looking at AI startups to predict which jobs AI will affect
Plants & Animals
White barn owls may use moonlight to startle prey
Astrobiology
How long can plants survive on Earth? New model suggests up to 2 billion more years
Ecology
Amazon fish reveal a synchronized survival tactic that could transfer to drone swarms
Earth Sciences
Hidden seismicity patterns before large earthquakes uncovered
Astronomy
Einstein Probe detects mysterious X-ray transient that doesn't fit any known class
Ecology
Honeybee metamorphosis map uncovers 842 active DNA switches that drive worker bee development
Optics & Photonics
Scientists create optical skyrmions using a two-century-old light phenomenon
Astronomy
Hidden dark force may slow cosmic structure growth, not speed it up
Optics & Photonics
Solid-state material turns visible light into high-energy UV at sunlight intensity, expanding solar energy potential
Plants & Animals
Local species trends may flag global extinction risk, global study finds
Superconductivity
Broken time-reversal symmetry phase in kagome metals may establish conditions for superconductivity
Astronomy
Corrected Pantheon+ analysis of supernovae challenges accelerating universe claim
Mathematics
How languages recycle parts of words to avoid confusion
Materials Science
Scientists design a clay that can prevent fruits and vegetables from rotting too quickly
Biotechnology
Bird-derived gene tool inserts plant DNA 30 times more efficiently than CRISPR
Evolution
New findings challenge idea that human bodies simply got bigger and bigger over time in a steady line
Earth Sciences
California has lost more than half of its coastal sand dunes, first-ever assessment reveals

Physicists achieve first-ever 'quadsqueezing' quantum interaction

Researchers at the University of Oxford have demonstrated a new type of quantum interaction using a single trapped ion. By creating and controlling increasingly complex forms of "squeezing" – including a fourth-order effect ...

Why do high-speed particles bounce higher in wet collisions?

Researchers have uncovered a counterintuitive phenomenon in collision dynamics: high-speed particles bounce back from wet walls much more strongly than expected. Integrating experimental observations with advanced numerical ...