
Thermodynamic Principle Predicts Final State of Merging Black Holes
Researchers have identified a maximum entropy rule that accurately forecasts the mass and spin of remnant black holes following cosmic collisions.
Reporting and analysis tagged physics.

Researchers have identified a maximum entropy rule that accurately forecasts the mass and spin of remnant black holes following cosmic collisions.

Researchers have successfully demonstrated a laboratory-based method to replicate the Penrose-Zel’dovich process, using synthetic rotation to extract energy from electromagnetic waves.

Researchers have achieved a new level of precision in confirming general relativity by isolating the frame-dragging effect from complex orbital perturbations.

Researchers demonstrate that advanced tensor network techniques allow classical laptops to solve complex quantum problems previously reserved for quantum computers.

The installation of Europe’s first Transition Edge Sensor spectrometer at BESSY II enables high-sensitivity analysis of atomic-scale materials and dilute molecular systems.

The Institute for Artificial Intelligence and Fundamental Interactions enters a second phase of operations with increased federal support and a focus on cross-disciplinary discovery.

Researchers have demonstrated that neutral-atom quantum computers can perform sustained error correction, closing the performance gap with superconducting alternatives.