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Multilayer Mirror - List of Manufacturers, Suppliers, Companies and Products

Multilayer Mirror Product List

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Dielectric multilayer film formed by alternately stacking oxides with different refractive indices.

Mirror that can reflect the entire visible light spectrum, usable in LCD projectors, color multifunction devices, telescopes, and more!

The "dielectric multilayer film" is a product that excels in absolute reflectivity, constructed with a multilayer of dielectrics over metal films such as Al and Ag. Custom designs are possible based on the angle of light incidence, polarization characteristics, wavelength range, etc. It is also referred to as a cold mirror because it does not contain infrared regions that include heat in the reflected light. 【Features】 ■ Multilayer structure of dielectrics over metal films such as Al and Ag ■ Excellent absolute reflectivity ■ No infrared region containing heat in the reflected light ■ Custom designs possible based on angle of light incidence, polarization characteristics, wavelength range, etc. *For more details, please refer to the PDF document or feel free to contact us.

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[Case Study] Improving reflectivity and laser resistance while suppressing group delay dispersion.

Aiming for advancements in medicine, let's improve the detection capabilities of biological observations! Here we present a case that achieved high reflectivity while suppressing the widening of pulse width!

Metal mirrors have the advantage of being less prone to discrepancies in the speed of light (low dispersion), but it is difficult to increase their reflectivity and laser resistance, which limits their ability to enhance detection capabilities in biological observation due to the inability to increase light intensity. Our company has developed a low-dispersion dielectric multilayer mirror designed to minimize changes in pulse shape associated with reflection, leveraging the technology cultivated through research and development of mirrors for femtosecond lasers. The detection capabilities of biological observation using multiphoton excitation microscopy have significantly improved. [Case Overview] ■ Challenge: To enhance reflectivity and laser resistance while suppressing group delay dispersion of femtosecond lasers. ■ Solution: A low-dispersion dielectric multilayer mirror that showcases the characteristics of femtosecond lasers. ■ Featured Product: Mirror for femtosecond lasers (low-dispersion mirror) *For more details, please refer to the PDF document or feel free to contact us.

  • mirror

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Dielectric multilayer film mirror

Three types available: wideband type, single wavelength type, and dual wavelength type! Mirror surface hardness comparable to glass.

This is an oxide dielectric alternating multilayer mirror using ion assist film deposition technology. The substrate is made of quartz, achieving a high reflectivity of over 99% and a mirror surface hardness comparable to that of glass. We offer three types: broadband, single wavelength, and dual wavelength. Web ordering and online quotation issuance are also available. *For more details, please refer to the PDF document or feel free to contact us.

  • mirror

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Broadband dielectric multilayer mirror

Over 99% high reflectivity! The mirror surface has a hardness almost equivalent to glass, making it easier to handle compared to metal mirrors.

This product is a broadband total reflection mirror that has been deposited on a flat substrate using ion-assisted film deposition technology, featuring two types of oxide dielectric alternating multilayers with different refractive indices. It offers a high reflectivity of over 99% across a wide wavelength range of 400 to 1200 nm or 600 to 1700 nm. With a high reflectivity of over 99%, the mirror surface has a hardness comparable to that of glass, making it easier to handle compared to metal mirrors. 【Features】 - Usable incident angles range from 0 to 50° - High reflectivity for both P-polarized and S-polarized light - Minimal aging changes - Usable in high temperature and high humidity environments - Almost no absorption loss, with high endurance against CW lasers *For more details, please refer to the PDF document or feel free to contact us.

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