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Mengurangi Pengelola Horisontal 1 μm pumped opo based on orientation patterned gap resah Belang Selamat datang

Femtosecond optical parametric oscillator continuously tunable across 3.6–8 μm  based on orientation-patterned gallium phosphide
Femtosecond optical parametric oscillator continuously tunable across 3.6–8 μm based on orientation-patterned gallium phosphide

PDF) 1-μm-pumped OPO based on orientation-patterned GaP
PDF) 1-μm-pumped OPO based on orientation-patterned GaP

1-micron-pumped OPO based on orientation-patterned GaP
1-micron-pumped OPO based on orientation-patterned GaP

Continuous wavelength tuning from 3.9–12 µm from an optical parametric  oscillator based on orientation-patterned GaP grown on GaAs
Continuous wavelength tuning from 3.9–12 µm from an optical parametric oscillator based on orientation-patterned GaP grown on GaAs

1-micron-pumped OPO based on orientation-patterned GaP
1-micron-pumped OPO based on orientation-patterned GaP

Continuous wavelength tuning from 3.9–12 µm from an optical parametric  oscillator based on orientation-patterned GaP grown on GaAs
Continuous wavelength tuning from 3.9–12 µm from an optical parametric oscillator based on orientation-patterned GaP grown on GaAs

a) Idler power and energy scaling as a function of the pump power in... |  Download Scientific Diagram
a) Idler power and energy scaling as a function of the pump power in... | Download Scientific Diagram

Continuous wavelength tuning from 3.9–12 µm from an optical parametric  oscillator based on orientation-patterned GaP grown on GaAs
Continuous wavelength tuning from 3.9–12 µm from an optical parametric oscillator based on orientation-patterned GaP grown on GaAs

Singly-resonant pulsed optical parametric oscillator based on orientation- patterned gallium phosphide
Singly-resonant pulsed optical parametric oscillator based on orientation- patterned gallium phosphide

Continuous wavelength tuning from 3.9–12 µm from an optical parametric  oscillator based on orientation-patterned GaP grown on GaAs
Continuous wavelength tuning from 3.9–12 µm from an optical parametric oscillator based on orientation-patterned GaP grown on GaAs

1-micron-pumped OPO based on orientation-patterned GaP
1-micron-pumped OPO based on orientation-patterned GaP

Schematic of the OP-GaAs OPO. Tunable 2.99-3.15 μm pump pulses from the...  | Download Scientific Diagram
Schematic of the OP-GaAs OPO. Tunable 2.99-3.15 μm pump pulses from the... | Download Scientific Diagram

Femtosecond optical parametric oscillator continuously tunable across 3.6–8 μm  based on orientation-patterned gallium phosphide
Femtosecond optical parametric oscillator continuously tunable across 3.6–8 μm based on orientation-patterned gallium phosphide

Broadband degenerate OPO for mid-infrared frequency comb generation
Broadband degenerate OPO for mid-infrared frequency comb generation

Molecular spectroscopy from 5-12 µm using an OP-GaP OPO
Molecular spectroscopy from 5-12 µm using an OP-GaP OPO

TUNABLE SOURCES: High-power CW OPOs span the spectrum | Laser Focus World
TUNABLE SOURCES: High-power CW OPOs span the spectrum | Laser Focus World

1 μm-pumped optical parametric generator and oscillator based on orientation -patterned gallium phosphide
1 μm-pumped optical parametric generator and oscillator based on orientation -patterned gallium phosphide

1-micron-pumped OPO based on orientation-patterned GaP
1-micron-pumped OPO based on orientation-patterned GaP

The OPO pump tuning curve. The wavelength was tuned by (i) intracavity... |  Download Scientific Diagram
The OPO pump tuning curve. The wavelength was tuned by (i) intracavity... | Download Scientific Diagram

Long-wave infrared generation from femtosecond and picosecond optical  parametric oscillators based on orientation-patterned gallium phosphide |  SpringerLink
Long-wave infrared generation from femtosecond and picosecond optical parametric oscillators based on orientation-patterned gallium phosphide | SpringerLink

Enhancement of efficiency in femtosecond optical parametric oscillators  using group-velocity-matching in long nonlinear crystals: APL Photonics:  Vol 4, No 5
Enhancement of efficiency in femtosecond optical parametric oscillators using group-velocity-matching in long nonlinear crystals: APL Photonics: Vol 4, No 5

PDF) 1-μm-pumped OPO based on orientation-patterned GaP
PDF) 1-μm-pumped OPO based on orientation-patterned GaP

1-micron-pumped OPO based on orientation-patterned GaP
1-micron-pumped OPO based on orientation-patterned GaP

1-micron-pumped OPO based on orientation-patterned GaP
1-micron-pumped OPO based on orientation-patterned GaP

PDF) 1-μm-pumped OPO based on orientation-patterned GaP
PDF) 1-μm-pumped OPO based on orientation-patterned GaP

a Femtosecond OPGaP OPO layout. b Microscopic cross-sectional image of... |  Download Scientific Diagram
a Femtosecond OPGaP OPO layout. b Microscopic cross-sectional image of... | Download Scientific Diagram

Calculated centre idler (a) and signal (b) wavelengths as a function of...  | Download Scientific Diagram
Calculated centre idler (a) and signal (b) wavelengths as a function of... | Download Scientific Diagram

PDF) 1-μm-pumped OPO based on orientation-patterned GaP
PDF) 1-μm-pumped OPO based on orientation-patterned GaP

a Picosecond OPO layout. b Output idler power recorded as a function of...  | Download Scientific Diagram
a Picosecond OPO layout. b Output idler power recorded as a function of... | Download Scientific Diagram