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Electron vortices in graphene detected for the first time. From phys.org.
Laser instrument on NASA's LRO successfully pings Indian moon lander. From phys.org.
A new simple scheme for atom interferometry. From phys.org.
Double-pulse LIBS technology provides environmentally friendly analysis of deep-sea materials. From phys.org.
Diamond quantum sensors measure neuron activity. From phys.org.
High-efficiency hollow-core optical fiber cable for medical procedures. From phys.org.
Team reports on ultrafast laser state active controlling based on anisotropic quasi-1D material. From phys.org.
Unlocking the secrets of spin with high-harmonic probes. From phys.org.
Smaller laser facility uses new method to exceed previous record for proton acceleration. From phys.org.
Laser printing on fallen tree leaves produces sensors for medical and laboratory use. From phys.org.
Quantum behavior at room temperature: When laser light makes materials magnetic. From phys.org.
Novel time-resolved atomic force microscopy technique captures ultrafast light-induced phenomena. From phys.org.
Superradiant atoms could push the boundaries of how precisely time can be measured. From phys.org.
NASA's CloudSat ends mission peering into the heart of clouds. From phys.org.
Scientists uncover a new model for the effects of radiation in water systems. From phys.org.
Microprinting millions of microparticles in the blink of an eye through multi-photon 3D laser printing. From phys.org.
Laser excitation of Th-229 nucleus: New findings suggest classical quantum physics and nuclear physics can be combined. From phys.org.
Study shows optical excitation of hot carriers enables ultrafast dynamic control of nanoscale plasmons. From phys.org.
New method for creating transparent magnetic materials using laser heating. From phys.org.
Room-temperature continuous-wave topological Dirac-vortex microcavity lasers on silicon. From phys.org.