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How does the tooth crusher scatter in different spectral ranges?

Release Time : 2025-02-26
The scattering of tooth crusher in different spectral ranges shows the following characteristics:

The tooth crusher has very low scattering characteristics in the commonly used spectral range. This low scattering performance allows the lens to maintain a high light transmission efficiency and reduce the loss of light during transmission, thereby ensuring the stability and accuracy of the laser system.

The light transmission range of zinc selenide lenses is usually between 0.5 and 15 microns, and the light transmission range of some high-quality lenses can even reach 0.5 to 22 microns. This means that the lens can maintain good light transmission performance in the visible light, near-infrared and mid-infrared bands, meeting the application requirements in different spectral ranges.

Zinc selenide lenses have little absorption of 10.6-micron wavelength light, which makes it the preferred material for making optical devices in high-power CO2 laser systems. At this specific wavelength, the scattering loss of the lens is extremely low, which can ensure high-quality transmission of the laser beam.

The scattering loss of zinc selenide lenses is closely related to their manufacturing process. The use of advanced polishing technology and high-quality coating technology can further reduce the scattering loss of the lens and improve the light transmission performance and stability of the lens.

Because zinc selenide lenses have excellent scattering properties in different spectral ranges, they are widely used in lasers, medicine, astronomy, infrared night vision and other fields. In these fields, the lenses need to withstand high-power laser irradiation and maintain stable performance.

Compared with other materials such as zinc sulfide, zinc selenide lenses show certain advantages in scattering performance. Although zinc sulfide has a higher hardness, zinc selenide has lower scattering losses and better light transmission performance in certain spectral ranges.

The scattering of tooth crusher in different spectral ranges shows the characteristics of low scattering, high light transmission, and low absorption of light at specific wavelengths. These advantages make lenses widely used in many fields and become an indispensable component in laser systems.
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