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Tetragonal Q Switched Single Mode YLF Optical Crystals

Categories Optical Crystals
Brand Name: CRYLINK
Model Number: YLF-Crystal
Certification: lso9001
Place of Origin: China
MOQ: 1
Price: negotiation
Payment Terms: T/T
Supply Ability: negotiation
Delivery Time: 3-4 weeks
Packaging Details: Carton
Doping Concentration: 0.5–3.0%
Chamfer: 0.1mm@45°
Clear Aperture: 95%
Crystal System: Scheelite Structure
Symmetry: Tetragonal
Melting Point: 1354°C
Feature: low beam divergence, Q-switching
Application: Lamp pumping, diode pumping
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Tetragonal Q Switched Single Mode YLF Optical Crystals

YLF-Crytal


►Description


YLF laser crystal is the abbreviation for yttrium lithium fluoride (YLiF4). YLF laser crystal is birefringent, which eliminates thermally induced depolarization loss. Pure YLF crystals are transparent within the spectrum band of 0.12 – 7.5 µm, photo-, thermal- and radiation-resistant. The YLF crystals have low values of nonlinear refraction index and thermos optical constants. YLF has good optical properties with high transparency throughout the emission spectrum of the conventional sources used for pumping solid-state lasers. YLF does not show UV damage, and it has lower non-radiative decay rates for processes occurring between electronic levels participating in the pumping and lasing process. YLF is also a good medium for mode locking at 1047 or 1053 nm and 1.313 µm as a result of its natural birefringence and low thermal lensing. Mode-locked pulses from YLF are shorter thanks to its broader linewidth, both for the 1047/1053-nm and 1.313-µm emission peaks. Yttrium Lithium Fluoride (YLF) is a crystalline material used in optics and solid-state single crystal laser rods. YLF is typically doped with materials such as neodymium, holmium, erbium and is generally immediately available in most volumes.


►Features


  • High power, low beam divergence, efficient single mode operation.
  • High average power Q-switched at a moderate repetition rate
  • Linear polarized resonators for Q-switching and frequency doubling
  • Potential uniform mode for large diameter rods or slabs

►Application


  • Lamp pumping, diode pumping
  • Conventional sources used for pumping solid-state lasers
  • Cascade emission between intermediate levels as well as an up-converter
  • A good medium for mode locking at 1047 or 1053 nm and 1.313 µm

►Parameter

Doping Concentration0.5–3.0%
Orientation Tolerance
Dopant Concentration Tolerance0.10%
Parallelism<10〞
Perpendicularity
Chamfer0.1mm@45°
Surface Quality10-5 (MIL-O-13830A)
Wavefront Distortion<λ/8@633 nm
Surface Flatnessλ/10 @633 nm
Clear Aperture95%
Diameter2-50.8 mm
Length1-180mm

Physical and Chemical Properties


Crystal SystemScheelite Structure
SymmetryTetragonal
Space GroupC64h-T41/a
Lattice Constantsa=5.1710, c=10.7484 Å
Density (g/cm3)3.96
Melting Point1354°C
clearageTypical

Optical characteristics


Transmission Range0.22 … 8 µm
Reflective Loss6 … 16%@0.2 … 10 µm
Refractive Indexno=1.46136, ne=1.48398@435.8nm

Index of Refraction



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