Potassium Dihydrogen Phosphate (KDP, KH?PO?) and Potassium Dideuterium Phosphate (KDP, KD?PO?) are tetragonal nonlinear optical crystals widely used for second (532 nm, 60% efficiency), third (355 nm), and fourth harmonic generation (266 nm) of Nd:YAG lasers via type I/II phase matching at room temperature, with KDP offering 75% SHG efficiency and higher damage threshold via deuteration. As electro-optic materials, they feature ultra-high coefficients (r??=23.3 pm/V for KDP), low half-wave voltage (~7.6 kV at 1064 nm), and broad bandwidth (>10 GHz), enabling applications in Pockels cells, modulators, and high-power laser systems like inertial confinement fusion, where KDP’s non-hygroscopicity outperforms KDP in harsh environments.
Item No :
KDP-KD*PProduct Origin :
FuZhouLead Time :
3-4 weeks
Capabilities:
Width x Length:
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1x1 ~ 16x16mm
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Lenght:
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0.02 ~ 20mm
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Specifications:
Angle tolerance:
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Δθ< ± 0.5°; Δφ< ±0.5°
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Dimensional Tolerance:
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(W ± 0.1mm) x (H ± 0.1mm) x (L + 0.2mm/-0.1mm)
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Flatness:
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<λ/8 at 633nm
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Surface Quality:
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20/10 Scracth/Dig
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Parallelism:
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< 20 arc seconds
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Perpendicularity:
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< 5 arc minutes
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Wavefront Distortion:
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<λ/8 at 633nm
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Clear Aperture:
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Central 95%
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Chamfer:
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0.15x45°
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Coating:
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* Protective coating is required to prevent polished surfaces from fogging.
* Anti-reflective coating should be considered if low reflectivity is required. |
Properties:
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KDP
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KD*P
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Chemical Formula
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KH2PO4
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KD2PO4
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Transparency Range
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200-1500nm
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200-1600nm
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Nonlinear Coefficients
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d36=0.44pm/V
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d36=0.40pm/V
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Refractive Index (at 1064nm)
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no=1.4938, ne=1.4599
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No=1.4948, ne=1.4554
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Electro-Optical Coefficients
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r41=8.8pm/V
r63=10.3pm/V |
r41=8.8pm/V
r63=25pm/V |
Longitudinal Half-Wave Voltage:
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Vp=7.65KV(l=546nm)
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Vp=2.98KV(l=546nm)
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Absorptance:
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0.07/cm
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0.006/cm
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Optical Damage Threshold:
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>5 GW/cm2
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>3 GW/cm2
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Extinction Ratio:
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30dB
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30dB
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Sellmeier Equations of KDP:
no2 = 2.259276 + 0.01008956/(λ2 - 0.012942625) + 13.005522λ2/(λ2 - 400)
ne2 = 2.132668 + 0.008637494/(λ2 - 0.012281043) + 3.2279924λ2/(λ2 - 400)
Sellmeier Equations of DKDP
no2 = 1.9575544 + 0.2901391/(λ2 - 0.0281399) - 0.02824391λ2 +0.004977826λ4
ne2 = 1.5005779 + 0.6276034/(λ2 - 0.0131558) - 0.01054063λ2 +0.002243821λ4