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  2. Blue laser - Wikipedia

    en.wikipedia.org/wiki/Blue_laser

    A blue laser emits electromagnetic radiation with a wavelength between 400 and 500 nanometers, which the human eye sees in the visible spectrum as blue or violet. Blue lasers can be produced by: direct, inorganic diode semiconductor lasers based on quantum wells of gallium(III) nitride at 380-417nm or indium gallium nitride at 450 nm

  3. Mosquito laser - Wikipedia

    en.wikipedia.org/wiki/Mosquito_laser

    Blue-violet lasers are preferable as higher powered ones, they are more available than red, and cheaper – due to them being used in the Blu-ray industry. The lethal laser is fired at the mosquito and is able to kill it mid-flight, possibly by overheating it.

  4. Ionized-air glow - Wikipedia

    en.wikipedia.org/wiki/Ionized-air_glow

    Ionized-air glow is the luminescent emission of characteristic bluepurpleviolet light, often of a color called electric blue, by air subjected to an energy flux either directly or indirectly from solar radiation.

  5. Laser - Wikipedia

    en.wikipedia.org/wiki/Laser

    The word laser is an anacronym that originated as an acronym for light amplification by stimulated emission of radiation. [1] [2] The first laser was built in 1960 by Theodore Maiman at Hughes Research Laboratories, based on theoretical work by Charles H. Townes and Arthur Leonard Schawlow.

  6. List of laser types - Wikipedia

    en.wikipedia.org/wiki/List_of_laser_types

    Chemical reaction in a burning jet of ethylene and nitrogen trifluoride (NF 3) Used in research for laser weaponry, operated in continuous-wave mode, can have power in the megawatt range. Deuterium fluoride laser ~3800 nm (3.6 to 4.2 μm) (~90% atm. transmittance) chemical reaction US military laser prototypes. COIL (chemical oxygen–iodine laser)

  7. Far-infrared laser - Wikipedia

    en.wikipedia.org/wiki/Far-infrared_laser

    Far-infrared laser or terahertz laser ( FIR laser, THz laser) is a laser with output wavelength in between 30 and 1000 µm ( frequency 0.3-10 THz), in the far infrared or terahertz frequency band of the electromagnetic spectrum . FIR lasers have application in terahertz spectroscopy, terahertz imaging as well in fusion plasma physics diagnostics.