Hubble Tension
Hubble Tension · Discrepancy between measured values of...
Concepts on Mass and Motion: Entropy, Symmetry and conservation laws, Wave-particle duality, Entanglement and superposition, Spacetime and curvature and Fields and gauge theory.
Hubble Tension · Discrepancy between measured values of...
Neutrino Oscillation · Detection of flavor change
Quantum Entanglement · 1935 (in the EPR paper)
Zero electrical DC resistance below a... · Varies by material; ranges from near...

Researchers demonstrated that hyperbolic metamaterials suppress chaotic wave dynamics, creating robust, chiral, broadband wave attractors in linear

A worldwide survey of physicists reveals deep divisions on dark matter, quantum gravity, and cosmology, with only two concepts winning majority support.

Researchers at Tohoku University have demonstrated that varying the number of layers in a crystal provides a systematic method for designing topological

A new optimal control theory framework from the University of Edinburgh designs magnetic pulses to switch digital bits, potentially cutting energy use by

Researchers at TU Darmstadt have shown that soft polymer particles called microgels can dramatically extend the stability of thin water jets generated by

Physicists Jianjun Dong and Yi Zeng have developed a unified theoretical framework that describes heat conduction as a process with memory and spatial

A new theoretical framework shows how reducing the thickness of a superconducting film can intrinsically alter its coherence length, changing how the

Physicists propose GRENDEL, a new detector in the CMS drainage gallery to search for neutral long-lived particles in the 0.2-15 GeV mass range, aiming to

Researchers used NMR to reveal how Joule heating creates a temperature-locked state in an organic conductor, stabilizing volatile resistive switching.

A study characterizes single-signal events from atmospheric neutrino neutral-current interactions in large liquid scintillator detectors, identifying the

Physicists have derived an exact mathematical formula for a 'spacetime crystal' state that can either dissolve or collapse into a microscopic black hole

Researchers have used a gate-defined antidot in bilayer graphene to measure the fractional charge of anyons, quasiparticles key to future topological

Computer simulations reveal how polyethylene welds gain strength from a molecular 'memory' of original surfaces, guiding crystal growth to reinforce