Physicists pinpoint the perfect crystal site for an ultra-accurate nuclear clock
Growing crystals “like alchemy,” researchers plotted out the ideal site within the lattice to build a nuclear clock
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Growing crystals “like alchemy,” researchers plotted out the ideal site within the lattice to build a nuclear clock
Rohm’s second-generation resonant tunneling diode oscillator reaches 40 µW maximum output in the same package as gen 1.
New nanostructure could be used to make lasers that work in the terahertz frequency range The post Plasmonic metamaterial makes a photonic time crystal appeared first on Physics Wo...
Separate time crystals inside a semiconductor can “find” each other across surprising distances and lock into the same rhythm. Researchers at TU Dortmund University demonstrated th...
A team led by Stettler, Navarro-Gessé, Collado and colleagues has unveiled a new kind of bulk acoustic resonator (BAR) designed specifically to expand the bandwidth of high-perform...
Sandia National Laboratories developed a laser-based crystal sensor that accurately measures intense magnetic fields in radiation-heavy fusion environments, improving diagnostics a...
Electronic fluctuations can act as a resonant bridge between normally separate crystal vibrations, offering a new route to study and control ferroaxial quantum states. Symmetry is...
Can a common mineral improve quantum materials? Researchers have replaced polymer-based assembly with mica to create cleaner atomic stacks for future electronics. Scientists from t...
Crystals and gemstones are a popular resource in modern metaphysical practices, mysticism, and alternative spirituality. It can be used in various powerful ways, including healing,...
Scientists have created the first quantum material that can sort and transport different quantum states of light at room temperature, potentially removing the need for bulky, ultra...
image: Structural schematics and electrochemical performance of 3D-GCTG and 3D-CTG (from 3D nanoporous anodic aluminum oxide template-assisted chemical vapor deposition) view more ...
Drawing less than 120 mW and tolerating 30 krad of total ionizing dose, the chip-scale atomic clock keeps LEO satellites synchronized when GNSS timing is unavailable.
What if materials used in LEDs and implants could be made into nanocrystals? University of Chicago researchers have developed a method to produce them. Researchers at the Universit...
A new compound fills the structural gap between known materials, linking crystal layer count to magnetic order and Dirac-like electronic bands.
This BFO (beat frequency oscillator) metal detector system demonstrates the practical application of analogue signal mixing and processing techniques. Beat frequency oscillator pro...
Could a tiny chip help generate multiple stable millimetre-wave signals for future 6G and precision quantum timing? Researchers have demonstrated a new approach. Researchers at Lou...
A slender organic crystal becomes 1.7 times brighter and shifts from light blue to yellow under pressure, pointing to new force-sensing materials.
In a breakthrough that could transform the study of strongly correlated quantum matter, researchers at the University of Basel and the Technical University of Munich have developed...
By reshaping quasicrystals with carefully designed defects, researchers can create and control stable twisting beams of light in new ways. The post A new way to trap and twist ligh...
Inside a chip no wider than a fingernail, a quantum computer is storing information as tiny vibrations, a breakthrough that could reshape how these machines are built. A quantum co...
Heat Turns Tiny Perovskite Crystals into Unexpected Shapes in a Microfluidic Reactor A new study has shown that tiny crystals designed to emit bright green light can be coaxed into...
Insider Brief Quantum computing is often portrayed as a race to build better qubits, but this is just part of the bigger challenge. Beneath every qubit is an endeavor to find the r...
Coupled resonator optical waveguides, or CROWs, are emerging as powerful building blocks for the next generation of optical communications, photonic computing and quantum technolog...
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