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  2. Excimer laser - Wikipedia

    en.wikipedia.org/wiki/Excimer_laser

    An excimer laser. An excimer laser, sometimes more correctly called an exciplex laser, is a form of ultraviolet laser which is commonly used in the production of microelectronic devices, semiconductor based integrated circuits or "chips", eye surgery, and micromachining . Since the 1960s, excimer lasers have been widely used in high-resolution ...

  3. Argon fluoride laser - Wikipedia

    en.wikipedia.org/wiki/Argon_fluoride_laser

    The argon fluoride laser (ArF laser) is a particular type of excimer laser, [1] which is sometimes (more correctly) called an exciplex laser. With its 193-nanometer wavelength, it is a deep ultraviolet laser, which is commonly used in the production of semiconductor integrated circuits, eye surgery, micromachining, and scientific research.

  4. Krypton fluoride laser - Wikipedia

    en.wikipedia.org/wiki/Krypton_fluoride_laser

    Krypton fluoride laser. The electra laser at NRL is a KrF laser that demonstrated over 90,000 shots in 10 hours. A krypton fluoride laser ( KrF laser) is a particular type of excimer laser, [1] which is sometimes (more correctly) called an exciplex laser. With its 248 nanometer wavelength, it is a deep ultraviolet laser which is commonly used ...

  5. Refractive surgery - Wikipedia

    en.wikipedia.org/wiki/Refractive_surgery

    Transepithelial photorefractive keratectomy (TransPRK) is a laser-assisted eye surgery to correct refraction errors of human eye corneas. It uses an excimer laser to ablate the outer layer of the cornea, the epithelium, as well as its connective tissue, the stroma, to correct the eye's optical power.

  6. List of laser types - Wikipedia

    en.wikipedia.org/wiki/List_of_laser_types

    Nd:YAP laser (yttrium aluminium perovskite) 1.0646 μm [7] Flashlamp, laser diode. Surgery, tattoo removal, hair removal, research, pumping other lasers (combined with frequency doubling to produce a green 532 nm beam) Nd:Cr:YAG laser. 1.064 μm, (1.32 μm) solar radiation. Experimental production of nanopowders.

  7. Excimer lamp - Wikipedia

    en.wikipedia.org/wiki/Excimer_lamp

    Introduction. Excimer lamps are quasimonochromatic light sources operating over a wide range of wavelengths in the ultraviolet (UV) and vacuum ultraviolet (VUV) spectral regions. Operation of an excimer lamp is based on the formation of excited dimers ( excimers ), which spontaneously transiting from the excited state to the ground state result ...

  8. Photolithography - Wikipedia

    en.wikipedia.org/wiki/Photolithography

    The commonly used deep ultraviolet excimer lasers in lithography systems are the krypton fluoride (KrF) laser at 248 nm wavelength and the argon fluoride laser (ArF) at 193 nm wavelength. The primary manufacturers of excimer laser light sources in the 1980s were Lambda Physik (now part of Coherent, Inc.) and Lumonics.

  9. This At-Home Laser Is Like a Magic Eraser to My Acne Scars - AOL

    www.aol.com/lifestyle/home-laser-magic-eraser...

    How to use the Nira Pro Laser: Firstly, make sure your skin is clean and dry, says Dr. King. "This is important because the wavelength is 1450 nanometers, and this has peak absorption by water in ...

  10. Nike laser - Wikipedia

    en.wikipedia.org/wiki/Nike_laser

    The Nike laser at the United States Naval Research Laboratory in Washington, DC is a 56-beam, 4–5 kJ per pulse electron beam pumped krypton fluoride excimer laser which operates in the ultraviolet at 248 nm with pulsewidths of a few nanoseconds. Nike was completed in the late 1980s and is used for investigations into inertial confinement fusion.

  11. TEA laser - Wikipedia

    en.wikipedia.org/wiki/TEA_laser

    TEA laser. A TEA laser is a gas laser energized by a high voltage electrical discharge in a gas mixture generally at or above atmospheric pressure. The most common types are carbon dioxide lasers and excimer lasers, both used extensively in industry and research; less common are nitrogen lasers. The acronym "TEA" stands for Transversely Excited ...