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Physics and Technology of Lasers

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  • CP-01-01

    CP-01-01

    A novel approach to evaluate discharge plasma impedance of copper vapor laser.

  • CP-01-02

    CP-01-02

    Dual Pumped Cr:forsterite Laser with Enhanced Lasing Efficiency

  • CP-01-03

    CP-01-03

    EFFECT OF RETARDANCE ON THE FRINGE PATTERN OF SAGNAC INTERFEROMETER

  • CP-01-04

    CP-01-04

    Design and dewvelopment of mechanical system for Carbon monoxide (CO) laser

  • CP-01-05

    CP-01-05

    Study of output characteristics of a Q Switched CW CO laser with mirror rotation

  • CP-01-06

    CP-01-06

    Development of monolithic 1 kW single transverse mode all-fiber Yb-doped CW fiber laser at 1080 nm

  • CP-01-07

    CP-01-07

    Development of engineered 567 J pulse energy long pulse Nd:YAG laser system for welding applications

  • CP-01-08

    CP-01-08

    Computationally Generated Dye Cell Flow Channel for High Repetition Rate SLM Dye Laser in GIG Cavity

  • CP-01-09

    CP-01-09

    Development of a 5 W narrow linewidth all-fiber multistage amplifier setup at 1550 nm.

  • CP-01-10

    CP-01-10

    Development of edge cladding of large sized Nd: phosphate glass disc for high-energy laser amplifier

  • CP-01-11

    CP-01-11

    Engineered two-arm time synchronized all-Fiber Optic Front End System for High Energy Nd: Glass laser

  • CP-01-12

    CP-01-12

    Generation of 920 W of peak power from all-fiber acousto-optic Q-switched Thulium doped fiber laser at 1940 nm

  • CP-01-13

    CP-01-13

    All-fiber passively Q-switched Ytterbium doped laser using fiber optic ring resonator

  • CP-01-14

    CP-01-14

    Theoretical and experimental studies for development of sealed-off glass tube CO2 laser

  • CP-01-15

    CP-01-15

    Study on Time Delay Echoes in Semiconductor Diode Laser with Optical Feedback

  • CP-01-16

    CP-01-16

    Remote monitoring and control of laser head pressure of Copper Vapor Laser

  • CP-01-17

    CP-01-17

    Lasing Action in CO2-N2-He Gain Mixture: Evaluation of Transition Temperature

  • CP-01-18

    CP-01-18

    Development of 5 W linearly polarized CW output from all-fiber amplifier at 1064 nm with < 0.2 nm spectral width.

Applied Optical Technologies