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Diamond optical prisms
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Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
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Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
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0
Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
0
0
Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
0
0
Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
0
0
Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
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Diamond optical prisms

Diamond has an exceptionally high transmission over a very broad range of wavelengths and low scatter in IR applications. It is extremely hard and chemically inert, making CVD diamond the optimal choice in applications demanding higher power, larger area, and resistance to hazardous materials or greater strength. These abilities also enable smaller material geometries to be used, which opens up new lightweight applications.
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Model: Optical cvd
Crystal growth process: single crystal CVD
Color: Colorless
Suggested application Applied to infrared radiation measuring device, the triangular diamond prism is good for mid-infrared transmission.
Key product features: 
1.Extremely broad transmission spectrum
2. The refractive index of diamond is ~2.4. achieve broad and high transmission in the mid-infrared at wavelengths from 1 micron to 30 microns.
3. The surface roughness< 10 nm, for good transmission from 1μm wavelength,
4. The error is not exceed 0.2mm
5. Wedged or flat—wedged for the suppression of interference oscillations. Wedge angle: 0.5 to 1 degree , Cut in a variety of shapes and sizes, including lenses and prisms.
6. Diamond’s exceptional properties provide benefits in a variety
Shape: Customized (Please provide drawings)
Size range: 1-12 mm (single crystal CVD diamond),
Thickness: 0.05-3mm,
Crystallography Typically 100% single sector {100}
Edges Laser Cut
Laser Kerf 3-5°
Lateral Tolerance: +0.05/-0.05mm
Nitrogen Concentration: < 10 ppm
Refractive Index (10.6 µm) (1): 1064nm:2.392      
600nm:2.415
Thermal Conductivity: typically 1800+Wm-1K-1
Transmission: Transmittance :1064nm:>65%
                              8μm~25μm:>70%



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