Scientists observe atoms spinning backward in quantum experiment

An international team of researchers has directly observed angular momentum transfer in a crystal for the first time, revealing an unexpected reversal in atomic rotation direction. The discovery, achieved with powerful terahertz laser pulses on bismuth selenide, highlights a quantum effect tied to crystal symmetry. Findings were published in Nature Physics.

The study was led by scientists from the Helmholtz-Zentrum Dresden-Rossendorf, the Fritz Haber Institute of the Max Planck Society, and partners in Berlin, Dresden, Jülich, and Eindhoven. Researchers used ultra-strong laser pulses to drive lattice vibrations into circular motion and tracked interactions between coupled vibrations in the material.

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Researchers at Los Alamos National Laboratory have developed quantum control techniques that can make systems appear to reverse the flow of time. The work, published in Physical Review X, uses measurements and feedback to manipulate the perceived direction of time in quantum processes.

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Researchers at TU Wien have found strong quantum entanglement in a centimeter-sized crystal made of cerium, palladium and silicon. The finding shows that macroscopic materials can exhibit collective quantum behavior. It was published in Nature Physics in 2026.

NASA's upgraded Cold Atom Lab is back in operation aboard the International Space Station, enabling new research into quantum states of matter. The facility creates Bose-Einstein condensates at temperatures near absolute zero.

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Researchers have created a new quantum state known as a fractional Fermi sea using ultracold cesium atoms in one dimension. The work, published in Physical Review Letters, shows particles organizing in ways that exceed standard theories.

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