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CUSTOM HIGH-ENERGY LASER MIRRORS

High Energy Laser Mirror

High-reflectivity, low-absorption mirrors with high laser damage threshold for demanding pulsed and high-power systems.

High Energy Laser Mirrors are precision optics for demanding systems requiring high reflectivity, low absorption, high laser damage threshold and excellent thermal stability.

SiO₂
Mirror Substrates
Fused Silica / Optical Glass
UV
High Reflectivity
Wavelength-Specific HR
ΔT
High LIDT
Low Absorption
C
Custom Design
Wavelength, Power, AOI & Polarization
High Energy Laser Mirror

High Energy Laser Mirror Overview

High Energy Laser Mirrors are precision optics for demanding systems requiring high reflectivity, low absorption, high laser damage threshold and excellent thermal stability.

Fused silica or selected optical glass substrates receive high-performance dielectric coatings that minimize absorption and energy loss under high-energy laser exposure.

Chenyu Optics provides wavelength-specific high-LIDT mirrors with customized AOI, polarization, dimensions and surface specifications for pulsed lasers, processing, beam delivery and scientific systems.

Key Advantages of High Energy Laser Mirrors

High reflectivity at specified laser wavelengths.
Low absorption for reduced thermal effects.
High laser damage threshold.
Excellent thermal and optical stability.
Precision surface accuracy and surface quality.
Custom wavelength, AOI and coating designs.
High Energy Laser Mirror for Laser and UV Optical Systems

Laser Focusing, Collimation & High LIDT

High energy laser mirrors provide efficient, low-absorption beam reflection and reliable steering in pulsed, high-power, processing and scientific laser systems.

Typical Specifications of High Energy Laser Mirror

Material Fused Silica / Optical Glass
Optical Function High-energy laser beam reflection
Product Type High Energy Laser Mirror
Wavelength Range Customized
Reflectivity Customized
Diameter / Size Customized
Angle of Incidence Customized
ThicknessCustomized
Polarization S / P / Unpolarized, application dependent
Surface Accuracy Customized
Surface Quality Up to 20-10 scratch-dig

Reflectance Curve & Coating Structure

High Energy Laser Mirror Reflectance Curve and Coating Structure
* Reflectance curves are design-specific. Final performance depends on wavelength, pulse duration, energy density, beam characteristics, AOI, polarization, substrate quality and coating design.

Why Choose Chenyu Optics for High Energy Laser Mirrors

Chenyu Optics supports drawing-based high energy laser mirror manufacturing for laser, ultraviolet, sensing and aerospace optical systems, from prototype verification through repeat production.

Drawing review and optical specification evaluation
Prototype, small-batch and repeat production support
Material selection for UV, visible, multispectral and infrared systems
Custom wavelength, AOI and reflectivity requirements
High-LIDT dielectric and low-absorption coatings
Inspection reports and protective optical packaging
High Energy Laser Mirror Manufacturing Workshop

Manufacturing Capability for High Energy Laser Mirrors

High Energy Laser Mirror Precision Polishing

Precision Mirror Substrate Polishing

Precision polishing of fused silica and optical glass substrates with custom diameter, thickness, flatness and surface quality.

High Energy Laser Mirror AR Coating

Multilayer Dielectric Coating

High-reflectivity, low-absorption multilayer coatings optimized for wavelength, AOI, polarization and laser operating conditions.

High Energy Laser Mirror Inspection

Inspection & Packaging

Dimensional, surface and optical inspection followed by clean handling and protective packaging for precision high energy laser mirrors.

Coating Options for High Energy Laser Mirrors

High-LIDT Dielectric Coating

Optimized for high laser damage threshold under demanding pulsed and high-power conditions.

High Reflective Coating

Provides high reflectivity at specified laser wavelengths while minimizing beam-delivery losses.

Low Absorption Coating

Customized for wavelength, pulse duration, repetition rate, AOI, polarization and laser power.

High Energy Laser Mirror Coating Selection

Option Typical Range Recommended Use Design Note
High-LIDT DielectricSpecified laser wavelengthHigh-energy pulsed systemsProvide complete pulse and beam parameters
High ReflectiveCustom laser bandHigh-power beam deliverySpecify AOI and polarization
Low AbsorptionCustomer specifiedThermally sensitive systemsMinimizes heat generation and energy loss
Custom LaserApplication specificProcessing, welding and researchProvide wavelength, power, pulse and geometry data

Applications of High Energy Laser Mirrors

HE

High Energy Lasers

High-LIDT mirrors for demanding high-energy systems.

PL

Pulsed Lasers

Low-absorption reflection for pulsed laser beams.

BD

Beam Delivery

Efficient high-power beam steering and delivery.

LC

Laser Cutting

Durable mirrors for cutting and processing equipment.

LW

Laser Welding

Thermally stable mirrors for welding systems.

SR

Scientific Research

Custom high-energy mirrors for research lasers.

PI

Precision Instruments

Stable reflection in laser measurement instruments.

BS

Beam Steering

Precision turning mirrors for high-power optical paths.

High Energy Laser Mirror FAQ

What is a high energy laser mirror?

It efficiently reflects high-energy or high-power laser beams while minimizing absorption, thermal effects and coating damage.

What determines the laser damage threshold?

LIDT depends on wavelength, pulse duration, repetition rate, beam size, energy density, substrate preparation, surface quality and coating design.

What substrates are available?

Fused silica and selected optical glasses are available according to wavelength, power level, thermal requirements and optical specifications.

Can the mirror be designed for different angles?

Yes. The dielectric coating can be optimized for the required wavelength, angle of incidence and polarization.

Can you provide custom high-LIDT coatings?

Yes. Coating solutions can be developed around the customer's complete laser parameters and optical performance requirements.

Handling & Manufacturing Notes

Avoid impact or excessive pressure on polished optical surfaces.
Protect AR-coated surfaces from scratches, fingerprints and contamination.
Select the coating according to the operating wavelength and application.
Consider thermal load and laser power during optical system design.
Use approved optical cleaning materials and procedures.
Specify wavelength, pulse duration, energy, repetition rate, beam diameter, AOI and polarization.

Need High Energy Laser Mirrors for Precision Optical Systems?

Send us your wavelength, laser type (CW or pulsed), pulse duration, pulse energy, repetition rate, average power, beam diameter, AOI, polarization, required reflectivity, mirror dimensions and quantity. Chenyu Optics will review the coating requirements and provide a suitable high-energy mirror solution.

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