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Alexandrite laser crystals found to be well suited for space applications
How Ants Inspired a New Way to Measure Snow With Space Lasers
Research team demonstrates robust light propagation in open systems. From phys.org.
Raman amplification at 2.2 μm in silicon core fibers with prospects for extended mid-infrared source generation. From phys.org.
Researchers develop high-efficiency mid- and long-wave optical parametric oscillator pump source. From phys.org.
Laser cutting tobacco slice experiment Effects of
Combined microscopy technique observes nanoscale behavior of light-driven polymers. From phys.org.
High-throughput mass spectrometry platform enables in-situ screening of fatty-acid-producing strains. From phys.org.
Scientists build high power cladding-pumped Raman fiber laser at 1.2 μm waveband. From phys.org.
Intense lasers magnetize solids within attoseconds. From phys.org
Streamlined microcomb design provides control with the flip of a switch. From phys.org.
Junk DNA in birds may hold key to safe, efficient gene therapy. From phys.org.
Building off the 'anti-laser,' researchers create a device that directs waves. From phys.org.
Scientists capture elusive chemical reaction using enhanced X-ray method
Laser Marking What Is It and How It Works Basic Knowledge
Laser pulses triple transition temperature for ferromagnetism in a rare-earth titanate. From phys.org
Application Guide-RDWorksV8 Encryption Management.
Two-beam ultrafast laser scribing of ultrafine graphene patterns. From phys.org.
Intense lasers magnetize solids within attoseconds
Scientists presents a one-step laser synthesis method for fabricating wideband microwave absorption metamaterial. From phys.org