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            • 偏硼酸鋇(α-BBO)
             
            偏硼酸鋇(α-BBO)

             

            偏硼酸鋇(α-BBO)晶體是一種優(yōu)異的雙折射材料,具有非常良好的光學(xué)性能,在紫外到中紅外都具有很好的透過。α-BBO晶體內(nèi)部質(zhì)量良好,吸收小,并且由于具有良好的紫外透過,被廣泛應(yīng)用于高消光比、深紫外激光系統(tǒng)中,主要加工成格蘭偏振棱鏡和偏振分束器、補(bǔ)償器等等..

            應(yīng)用:格蘭棱鏡、偏振分束器、補(bǔ)償器等等..


             

            Specifications:

            Diameter:
            Max 50m
            Length:
            Max 35mm
            Surface Quality:
            better than 20/10 scratch/dig
            Beam Deviation:
            < 3 arc min
            Optical Axis Orientation:
            +/-0.2deg
            Flatness:
            < λ/4 @632.8nm
            Wavefront Distortion:
            < λ/2 @632.8nm
            Coating:
            Coating upon Request

            Properties:

            Transmitting range
            189nm~3500nm
            Density
            3.85g/cm3
            Therm-Optic Coefficients
            dno/dT=-9.3 x 10-6/ °C
            dno/dT=-16.6x10-6/ °C
            Optical Homogeneity
            Δn≈10-6/cm
            Mohs Hardness
            4.5
            Damage Threshold
            1GW/cm2 at 1064nm
            500MW/cm2 at 532nm
            Hygroscopic Susceptibility
            Low
            Thermal Expansion Coefficients
            αa=4x10-6
            (25 °C - 900 °C)
            αa=4x10-6
            Linear Absorption Coefficients
            a<0.005cm-1 from 300nm to 2300nm
            Refractive Indices,
            Birefringence(△n=ne-no)
            and wal-off Angle at 45 °C(ρ)
            ne=1.58462,no=1.65790,?n=-0.073282;ρ=-4.9532° at 1064nm
            ne=1.60206,no=1.67755,?n=-0.075491;ρ=-5.0407° at 532nm
            ne=1.67190,no=1.76171,?n=-0.089805;ρ=-5.6926° at 266nm
            Sellmeier equation(l in μm)
            no2=2.7471+0.01878/( λ2-0.01822)-0.01354 λ2
            ne2=2.37153+0.01224/( λ2-0.01667)-0.01516 λ2

             

            Note: Kinds of sizes, cut angle, coating are available upon request.


               PDF to download

             
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