A device for measuring the nonlinear absorption curve of materials
A non-linear absorption and curve technology, applied in the direction of measurement devices, analytical materials, color/spectral characteristics measurement, etc., can solve the problems that energy meters are difficult to respond, limit the measurement range of nonlinear absorption curves, increase the complexity of measurement devices, etc., to achieve High-precision nonlinear absorption curve measurement, the effect of improving the measurement range and improving the measurement accuracy
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Embodiment 1
[0034] The gain medium of the pulsed laser is Nd:YLF, and the output fundamental frequency light ω 1 =1053 nm, pulse width τ=50 ps, fundamental frequency spot diameter 0.7cm, horizontal polarization of outgoing laser; the crystal frequency doubling system is composed of KDP and DKDP crystals, obtained after frequency conversion ω 2= 263 nm quadruple frequency light; both the dispersion prism and the telephoto lens are ultraviolet high-transmission components, and the focal length f of the telephoto lens is about 130 cm; the material of the beam splitter is fused silica, and the reflectivity is 4%; the sample to be tested It is a DKDP crystal with a deuterium content of 66%, the sample thickness h is 0.8 cm, and the sample surface is finely polished; the resolution of the scientific grade CCD camera is 1024 pixels × 1024 pixels, and the size of a single pixel is 13 μm × 13 μm; the attenuation film It is a quadruple frequency laser attenuator; the measuring range of the en...
Embodiment 2
[0048] The implementation of this embodiment is basically the same as that of Embodiment 1, the main difference is that the crystal frequency doubling system is two KDP crystals, which generate ω 2 =351 nm frequency tripled light; the focal length of the telephoto lens is about 140 cm, the distance between the photosensitive surface of the scientific grade CCD camera and the sample to be tested is 104 cm; the attenuation film is a triple frequency laser attenuation film, scientific grade CCD The maximum grayscale of the flare on the camera is 87% of its saturated grayscale. The results show that the transmittance of DKDP crystals decreases nonlinearly with the increase of laser intensity, and compared with the results in Example 1, the nonlinear absorption of DKDP crystals under 351 nm laser irradiation decreases significantly.
Embodiment 3
[0050] The implementation of this embodiment is basically the same as that of Embodiment 1, the main difference is that the gain medium of the pulsed laser is Nd:YAG, and the output fundamental frequency light ω 1 =1064 nm; the crystal frequency doubling system is KDP and DKDP crystals, and the cutting angles of KDP and DKDP crystals are generated for 1064 nm laser ω 2 = 266 nm quadrupled light.
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