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Progress in the investigation of ultrafast electron dynamics using short light pulses. From phys.org.
Room-temperature continuous-wave topological Dirac-vortex microcavity lasers on silicon. From phys.org.
New milestone in laser cooling: Research team cools silica glass by a record 67 Kelvin. From phys.org.
Study shows optical excitation of hot carriers enables ultrafast dynamic control of nanoscale plasmons. From phys.org.
Turning glass into a 'transparent' light-energy harvester. From phys.org.
Perovskite LEDs, a thousand times brighter than OLEDs. From phys.org.
Gaining more control over the fabrication of surface micro/nano structures using ultrafast lasers. From phys.org.
Laser excitation of Th-229 nucleus: New findings suggest classical quantum physics and nuclear physics can be combined. From phys.org.
A micro-ring resonator with big potential: Hybrid device significantly improves laser technology. From phys.org.
Quantum behavior at room temperature: When laser light makes materials magnetic. From phys.org.
Physicists arrange atoms in close proximity, paving way for exploring exotic states of matter. From phys.org.
Scientists demonstrate high-resolution lidar sees birth zone of cloud droplets, a first-ever remote observation. From phys.org.
A 2D 'antenna' boosts light emission from carbon nanotubes. From phys.org.
New technique could speed up the development of acoustic lenses, impact-resistant films and other futuristic materials. From phys.org.
Researchers can now accurately measure the emergence and damping of a plasmonic field. From phys.org
Researchers identify new method to boost laser processing resolution. From phys.org.
How NASA uses simple technology to track lunar missions. From phys.org.
NASA laser reflecting instruments to help pinpoint Earth measurements. From phys.org.
Researchers develop a new type of frequency comb that promises to further boost the accuracy of timekeeping. From phys.org.