Product Code : CO-Nd:YVO4-5N-CU
Neodymium Doped Yttrium Orthovanadate (Nd:YVO4) is the most efficient laser host crystal for diode pumping among the current commercial laser crystals, especially, for low to middle power density. This is mainly for its absorption and emission features surpassing Nd:YAG. Pumped by laser diodes, Nd:YVO4 crystal has been incorporated with high NLO coefficient crystals (LBO, BBO, or KTP) to frequency-shift the output from the near infrared to green, blue, or even UV. This incorporation to construct all solid state lasers is an ideal laser tool that can cover the most widespread applications of lasers, including machining, material processing, spectroscopy, wafer inspection, light displays, medical diagnostics, laser printing, and data storage, etc. It has been shown that Nd:YVO4 based diode pumped solid state lasers are rapidly occupying the markets traditionally dominated by water-cooled ion lasers and lamp-pumped lasers, especially when compact design and single-longitudinal-mode output are required.
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Product | Product Code | Purity | Size | Contact Us |
Neodymium Doped Yttrium Orthovanadate (Nd:YVO4) is the most efficient laser host crystal for diode pumping among the current commercial laser crystals, especially, for low to middle power density. This is mainly for its absorption and emission features surpassing Nd:YAG. Pumped by laser diodes, Nd:YVO4 crystal has been incorporated with high NLO coefficient crystals (LBO, BBO, or KTP) to frequency-shift the output from the near infrared to green, blue, or even UV. This incorporation to construct all solid state lasers is an ideal laser tool that can cover the most widespread applications of lasers, including machining, material processing, spectroscopy, wafer inspection, light displays, medical diagnostics, laser printing, and data storage, etc. It has been shown that Nd:YVO4 based diode pumped solid state lasers are rapidly occupying the markets traditionally dominated by water-cooled ion lasers and lamp-pumped lasers, especially when compact design and single-longitudinal-mode output are required.
Nd3+:YVO4 crystal has higher absorption and emission cross sections, wider gain bandwidth and pump wavelength range, shorter upper state lifetime, higher refractive index, and thus lower thermal conductivity. Nd:YVO4 crystal is very suitable for passively mode-locked lasers with high pulse repetition rate. The disadvantage of Nd:YVO4 is that it is impossible to obtain as high pulse energy as Nd:YAG laser when Q-switched laser works, because it has lower upper state lifetime and higher gain efficiency. Finally, Nd:YVO4 is more suitable as an active medium for high pulse repetition rate Q-switched lasers and low laser threshold CW lasers.
Synonyms
Nd:YVO4, Nd-doped yttrium vanadate, neodymium vanadium oxide
Size:customized
Concentration Tolerance (atm%) | 0.5%, 1.1%, 2.0%, 3.0% |
Orientation | A-cut or C-cut |
Parallelism | 20〞 |
Perpendicularity | 5〞 |
Surface Quality | 10/5 Scratch/Dig per MIL-O-13830 B |
Wavefront Distortion | <λ/8 @633nm |
Surface Flatness | λ/10@ 633 nm |
Transmitted Wavefront Distortion | ≦ λ/4 @633 nm |
Clear Aperture | >90% |
Chip | ≦ 0.1 mm |
Chamfer | ≤0.2mm@450 |
Dimension Tolerance | (W±0.1mm)x(H±0.1mm)x(L+0.2/-0.1mm) (L<2.5mm) |
(W±0.1mm)x(H±0.1mm)x(L+0.5/-0.1mm) (L≥2.5mm) | |
Angle Tolerance | ±0.05 mm |
Angle Tolerance | ≤0.5° |
Damage Threshold[GW/cm2 ] | >1 for 1064nm, TEM00, 10ns, 10Hz (AR-coated) |
Coatings | HR@1064nm+532nm+HT@808nm/AR@1064nm+532nm |
Various doping concentrations from 0.1 to 3%
Doping concentration tolerance: ± 0.05% (atm% < 1%), ± 0.1% (atm% ≧ 1%)
High quality Nd:YVO4 crystals size up to Φ20 x 40 mm3
10,000 pcs of Nd:YVO4 devices per month in sizes 3x3x0.5mm3 to 4x4x30 mm3
Per your request or drawing
We can customized as required
Properties(Theoretical)
Compound Formula | Nd:YVO4 |
Appearance | Crystalline solid |
Crystal Phase / Structure | Tetragonal |
Thermal Conductivity | 5.23 W/m·K (parallel to C-axis) / 5.10 W/m·K (perpendicular to C-axis) |
Crystal Structure | Zircon Tetragonal, space group D4h-I4/amd |
Density | 4.22g/cm3 |
Melting Point | 1825 |
Hardness (Mohs) | 4~5 |
Crystal Structure | Zircon Tetragonal, space group D4h-I4/amd |
Lattice Parameter | a = b = 7.1193 Å, c = 6.2892 Å |
Atomic Density | 1.26 ×1020 atoms/cm3 (Nd 1.0%) |
Mohs Hardness | 4-5 (Glass-like) |
Thermal Expansion Coefficient (300K) | αa = 4.43 × 10-6/K |
αc = 11.37 × 10-6/K | |
Thermal Conductivity Coefficient (300K) | // C: 0.0523 W/cm/K |
⊥C: 0.0510 W/cm/K |
Laser Properties of Nd:YVO4 vs Nd:YAG
Laser Crystal | Doping(atm%) | σ(×10-19 cm2) | α(cm-1) | τ(μs) | Lα(mm) | Pth(mW) | ηS(%) |
Nd:YVO4 (a-cut) | 1.0 | 25 | 31.2 | 90 | 0.32 | 30 | 52 |
2.0 | 25 | 72.4 | 50 | 0.14 | 78 | 48.6 | |
Nd:YVO4 (c-cut) | 1.1 | 7 | 9.2 | 90 | 231 | 45.5 | |
Nd:YAG | 0.85 | 6 | 7.1 | 230 | 1.41 | 115 | 38.6 |
1. One most attractive character of Nd:YVO4 is, compared with Nd:YAG, its 5 times larger absorption coefficient in a broader absorption bandwidth around the 808 nm peak pump wavelength, which just matches the standard of high power laser diodes currently available. This means a smaller crystal that could be used for the laser, leading to a more compact laser system. For a given output power, this also means a lower power level at which the laser diode operates, thus extending the lifetime of the expensive laser diode. The broader absorption bandwidth of Nd:YVO4 which may reaches 2.4 to 6.3 times that of Nd:YAG. Besides more efficient pumping, it also means a broader range of selection of diode specifications. This will be helpful to laser system makers for wider tolerance for lower cost choice.
2. Nd:YVO4 crystal has larger stimulated emission cross-section, both at 1064 nm and 1342 nm. When a-axis cut Nd:YVO4 crystal lasing at 1064 nm, it is about 4 times higher than that of Nd:YAG, while at 1340 nm the stimulated cross-section is 18 times larger, which leads to a CW operation completely outperforming Nd:YAG at 1320 nm. These make Nd:YVO4 laser be easy to maintain a strong single line emission at the two wavelengths.
3. Another important character of Nd:YVO4 lasers is, because it is an uniaxial rather than a high symmetry of cubic as Nd:YAG, it only emits a linearly polarized laser, thus avoiding undesired birefringent effects on the frequency conversion. Although the lifetime of Nd:YVO4 is about 2.7 times shorter than that of Nd:YAG, its slope efficiency can be still quite high for a proper design of laser cavity, because of its high pump quantum efficiency.
Nd:YVO4's advantages over Nd:YAG
As high as about five times larger absorption efficient over a wide pumping bandwidth around 808 nm (therefore, the dependency on pumping wavelength is much lower and a strong tendency to the single mode output)
Lower lasing threshold and higher slope efficiency
As a uniaxial crystal with large birefringence, the emission is only linearly polarized
As large as three times larger stimulated emission cross-section at the lasing wavelength of 1064 nm
Optical and spectral properties of Nd:YVO4 crystal
Lasing Wavelength | 1064 nm, 1342 nm |
Thermal Optical Coefficient (300K) | dno/dT = 8.5 × 10-6 /K |
dne/dT = 2.9 × 10-6 /K | |
Stimulated Emission Cross-section | 25 x 10-19 cm2 @1064 nm |
Fluorescent Lifetime | 90 μs (1% Nd doped) |
Absorption Coefficient | 31.4 cm-1 @810 nm |
Intrinsic Loss | 0.02 cm-1 @1064 nm |
Gain Bandwidth | 0.96 nm @1064 nm |
Polarized Laser Emission | π polarization; parallel to optical axis (c-axis) |
Diode Pumped Optical to Optical Efficiency | > 60% |
Sellmeier Equations (λ in µm) | no2 = 3.77834 + 0.069736 / (λ2 - 0.04724) - 0.010813 λ2 |
ne2 = 4.59905 + 0.110534 / (λ2 - 0.04813) - 0.012676 λ2 | |
Pump Wavelength | 808nm |
Refractive Index | 1.9573(no); 2.1652(ne) @1064nm |
1.9721(no); 2.1858(ne) @808nm | |
2.0210(no); 2.2560(ne) @532nm | |
Absorption Length | 0.32 mm @ 808 nm |
ATT provides the following coatings
Both ends AR/AR-1064/808 nm, R < 0.2% @1064 nm, R < 0.5% @808 nm, or R < 0.1% @1064 nm, R<3% @808 nm
S1: HR-1064/532 nm, HT-808 nm, R > 99.8% @1064/532 nm, T>90% @808 nm S2: AR-1064/532 nm, R < 0.2% @1064 nm, R < 0.5% @532 nm
S1: HR-1064 nm, HT-808 nm, R > 99.8% @1064 nm, T > 95% @808 nm S2: AR-1064 nm, R < 0.1% @1064 nm
S1, S2 AR-coated, S3: gold/chrome plated
Both ends AR/AR-1064 nm; S3: AR-808 nm
Other coatings are available upon request
Applications of Nd:YVO4 Crystal
457nm laser
Holography
671nm laser
Military field
Medical test
Material processing
Laser printing
Standard Packing:
Typical bulk packaging includes palletized plastic 5 gallon/25 kg. pails, fiber and steel drums to 1 ton super sacks in full container (FCL) or truck load (T/L) quantities. Research and sample quantities and hygroscopic, oxidizing or other air sensitive materials may be packaged under argon or vacuum. Solutions are packaged in polypropylene, plastic or glass jars up to palletized 440 gallon liquid totes Special package is available on request.
ATTs’ Nd:YVO4 Crystal is carefully handled to minimize damage during storage and transportation and to preserve the quality of our products in their original condition
Chemical Identifiers
Linear Formula | Nd:YVO4 |
MDL Number | N/A |
EC No. | N/A |