Acton Optics Nd:YAG laser mirrors and coatings are optimized for high damage threshold and high durability tolerance. Acton Optics 266-FR45 mirrors, for example, provide >/= 98% reflectance and laser induced damage threshold of 4 - 7 J/cm2 (dependent on specific conditions). Our standard coatings, listed below, are available for fast delivery to laser manufacturers, system integrators and laser end users. High performance antireflection coatings are available for all the Nd:YAG wavelengths..
We are continuously improving our thin film designs and coating processes to meet the rigorous applications these and other markets:
- Medical
- Semiconductor
- Industrial
- Research
Request a quote for your specific requirement.Key Benefits- High damage thresholds
- High durability tolerance
- All Nd:YAG wavelengths: 212nm, 266nm, 355nm, 532nm, 1064nm
Key Nd:YAG Applications - Medical: dentistry, opthalmology
- Cosmetic: laser hair removal, spider vein treatment
- Materials processing: cutting, welding, etching
Nd:YAG Mirror Coatings | |
Wavelength | %R at NI | %R at 45 AOI | Damage Threshold | Coating Curve |
212nm | >= 95% | >= 92% | | view curve |
266nm | >= 98% | >= 98% | 4 - 7 J/cm² | view curve |
355nm | >= 99% | >= 98% | 4 - 7 J/cm² | view curve |
532nm | >= 99% | >= 99% | | view curve |
1064nm | >= 99% | >= 99% | | view curve |
Link to Acton standard mirror blanksNd:YAG Laser Antireflection CoatingsOur Nd:YAG antireflection coatings are durable electron-beam deposited dielectrics designed to minimize reflections that normally occur with uncoated surfaces. These low-absorption coatings are ideal for increasing the transmittance properties of lenses and for reducing second-surface reflections of beamsplitters. They offer high resistance to laser damage, making them suitable for high-energy laser usage. Coatings can be applied to customer-supplied material or provided on our substrates and lenses.
Listed below are standard Nd:YAG laser antireflection coatings with specifications and calibration curves for your reference: