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  1. ARD.TA - Arad Ltd.

    Yahoo Finance

    4,906.00-39.000 (-0.79%)

    at Thu, May 30, 2024, 10:24AM EDT - U.S. markets closed

    Delayed Quote

    • Open 5,000.00
    • High 5,000.00
    • Low 4,852.00
    • Prev. Close 4,945.00
    • 52 Wk. High 6,421.00
    • 52 Wk. Low 4,527.00
    • P/E 12.20
    • Mkt. Cap 1.21B
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  3. Arad, Romania - Wikipedia

    en.wikipedia.org/wiki/Arad,_Romania

    The most important hospitals in Arad are Arad County Clinical Hospital and Arad Municipal Hospital (in the late 2000s it merged with Arad County Clinical Hospital). The city also has a number of public hospitals (Arad Maternal Hospital, The Polyclinic, The Dental Clinic, etc.) and private hospitals (MedLife Genesis, Laser System, Mediqua, etc.)

  4. LULI2000 - Wikipedia

    en.wikipedia.org/wiki/LULI2000

    LULI2000 is a high-power laser system dedicated to scientific research. It is located in LULI laboratory, [1] at École Polytechnique [2] in France . The main application of this type of laser is related to the very high energy fluxes obtained after focusing onto tiny focal spots, from micrometers to hundreds of micrometers in diameter.

  5. Extreme Light Infrastructure - Wikipedia

    en.wikipedia.org/wiki/Extreme_Light_Infrastructure

    The Extreme Light Infrastructure ( ELI ERIC) is a research organization with the world's largest collection of high power-lasers. [1] ELI operates several high-power, high-repetition-rate laser systems which enable the research of physical, chemical, materials, and medical sciences. [2]

  6. Pulsed laser - Wikipedia

    en.wikipedia.org/wiki/Pulsed_laser

    Pulsed operation of lasers refers to any laser not classified as continuous wave, so that the optical power appears in pulses of some duration at some repetition rate. This encompasses a wide range of technologies addressing a number of different motivations.

  7. Laser-induced breakdown spectroscopy - Wikipedia

    en.wikipedia.org/wiki/Laser-induced_breakdown...

    Laser-induced breakdown spectroscopy (LIBS) is a type of atomic emission spectroscopy which uses a highly energetic laser pulse as the excitation source. [1] [2] The laser is focused to form a plasma, which atomizes and excites samples.

  8. Asterix IV laser - Wikipedia

    en.wikipedia.org/wiki/Asterix_IV_laser

    Asterix IV laser. The Asterix IV laser in Prague (commonly referred to by the acronym PALS for Prague Asterix Laser System) is a high power photolytically pumped iodine gas laser capable of producing ~300 to 500 picosecond long pulses of light at the fundamental line of 1.315 micrometres wavelength with a total energy of about 1 kilojoule (or ...

  9. Pascal Photocoagulator - Wikipedia

    en.wikipedia.org/wiki/Pascal_Photocoagulator

    The PASCAL Photocoagulator is an integrated semi-automatic pattern scan laser photocoagulation system designed to treat ocular diseases using a single shot or predetermined pattern array. The device is for ophthalmologists , particularly those that focus in vitreo-retinal surgery, a type of eye surgery .

  10. Laser ultrasonics - Wikipedia

    en.wikipedia.org/wiki/Laser_ultrasonics

    Laser-ultrasonics uses lasers to generate and detect ultrasonic waves. It is a non-contact technique used to measure materials thickness, detect flaws and carry out materials characterization. The basic components of a laser-ultrasonic system are a generation laser, a detection laser and a detector.

  11. Central Laser Facility - Wikipedia

    en.wikipedia.org/wiki/Central_Laser_Facility

    As of 2013 there are 5 active laser laboratories at the CLF: Vulcan, Astra Gemini, Artemis, ULTRA, and OCTOPUS. The facility provides both high-power and high-sensitivity lasers for study across broad fields of science from atomic and plasma physics to medical diagnostics, biochemistry and environmental science. [2]

  12. Optical parametric oscillator - Wikipedia

    en.wikipedia.org/wiki/Optical_parametric_oscillator

    With a suitable range of periods, output wavelengths from 700 nm to 5000 nm can be generated in periodically poled lithium niobate (PPLN). Common pump sources are neodymium lasers at 1064 nm or 532 nm. An important feature of the OPO is the coherence and the spectral width of the generated radiation.