NIR 1030-1064 nm Combination of harmonics (original) (raw)

Wavelength 1030-1064 nm Combination of harmonics

213 | 266 | 355 | 532 | 1064 nm as examples

Nd:YAG/YVO4 can be adapted to all other wavelenghts

Combination of harmonics

DAR

AR

DAR

DAR

5th harmonic213 nm 4th harmonic266 nm 3rd harmonic355 nm 2nd harmonic532 nm 1064 nm AOI method
R < 1% R < 0.8% EBE
R < 1% R < 0.5% EBE
R < 1% R < 0.5% EBE
R < 0.75% R < 0.5% EBE
R < 0.5% R < 0.3% EBE
R < 0.2% R < 0.1% IBS
R < 1% R < 0.75% 45° EBE

TAR

AR

TAR

TAR

5th harmonic213 nm 4th harmonic266 nm 3rd harmonic355 nm 2nd harmonic532 nm 1064 nm AOI method
R < 1% R < 1% R < 0.5% EBE
R < 1% R < 1% R < 0.5% EBE
R < 0.3% R < 0.3% R < 0.3% IBS

DHR

HR

DHR

DHR

5th harmonic213 nm 4th harmonic266 nm 3rd harmonic355 nm 2nd harmonic532 nm 1064 nm AOI method
R > 99% R > 99.5% EBE
R > 99% R > 99.5% 45° EBE
R > 99% R > 99.5% 45° EBE
R > 99.8% R > 99.8% EBE
R > 99.9xx% R > 99.9xx% IBS

MHR

HR

MHR

MHR

5th harmonic213 nm 4th harmonic266 nm 3rd harmonic355 nm 2nd harmonic532 nm 1064 nm AOI method
R > 98.5% R > 99% R > 99.5% 45° EBE
R > 99% R > 99% R > 99% EBE
R > 97% R > 98% R > 99% R > 99.5% 45° EBE

LP

FILTER

LP

LP

5th harmonic213 nm 4th harmonic266 nm 3rd harmonic355 nm 2nd harmonic532 nm 1064 nm AOI method
Rs > 99% Rp < 5% Rp < 3% Rp < 3% Rp < 3% 45° EBE
R > 99.5% R < 6% R < 6% 45° EBE
R > 99.5% R < 3% R < 2% 45° MS
Rs > 99.5% Rp < 1% Rs < 1% 45° IBS
R > 99.8% R < 2% EBE
Rs > 99.8% Rp < 1% 45° EBE

SP

FILTER

SP

SP

5th harmonic213 nm 4th harmonic266 nm 3rd harmonic355 nm 2nd harmonic532 nm 1064 nm AOI method
R < 5% R > 99.5% EBE
R < 10% R > 99.8% EBE
R < 2.5% R < 2% R > 99.9xx% IBS
R < 5% R > 99.85% EBE
Rp < 3% Rs > 99.5% 45° EBE

NF

FILTER

NF

NF

5th harmonic213 nm 4th harmonic266 nm 3rd harmonic355 nm 2nd harmonic532 nm 1064 nm AOI method
R < 8% R > 99.5% R < 8% R < 8% 45° MS
R < 5% R > 99.7% R < 5% EBE
Rp < 5% Rs > 99.7% Rp < 5% 45° EBE

MP

FILTER

MP

MP

5th harmonic213 nm 4th harmonic266 nm 3rd harmonic355 nm 2nd harmonic532 nm 1064 nm AOI method
Rp > 98% Rp > 98% Rs < 5% Rp < 5% 45° EBE
R > 99% R > 99.5% R < 5% 45° EBE

All values are given for standard coatings. Customized coatings available for all types.

Coating methods available:

EBEIADIPMSIBS

Examples

If not mentioned otherwise, all values and diagrams are given

... for the standard substrate material used in the described wavelength area (mostly Fused Silica or CaF2).

... without consideration of the rear surface.

... with EBE coating technique for a good cost-performance ratio.

Customized coatings are available for all types.

–––– dashed lines show the zoomed curve with the stated magnification

AR 355 nm + 532 nm + 1064 nm / 0°

[B-00536]AR 355 nm + 532 nm + 1064 nm / 0°

355 nm + 532 nm: R < 1%; 1064 nm: R < 0.5%

HR 355 nm + 532 nm + 1064 nm / 0° Type 2

[B-04212]HR 355 nm + 532 nm + 1064 nm / 0° Type 2

355 nm + 532 nm + 1064 nm: R > 99%

R 50% 355 nm + 532 nm / 45°

[B-01788]R 50% 355 nm + 532 nm / 45°

355 nm + 532 nm: R ±5% vs theoretical curve

HT 532 nm HR 1064 nm / 0°

[B-00001]HT 532 nm HR 1064 nm / 0°

532 nm: R < 5%; 1064 nm: R > 99.85%

HR 532 nm R 50% 1064 nm / 0°

[B-11735]HR 532 nm R 50% 1064 nm / 0°

532 nm: R > 99.8%; 1064 nm: R ±5%
vs theoretical curve

HT 355 nm / p  HR 532 nm / s  HT 1064 nm / p / 45°

[B-02977]HT 355 nm / p HR 532 nm / s HT 1064 nm / p / 45°

355 nm: Rp < 5%; 532 nm: Rs > 99.7%;
1064 nm: Rp < 5%