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Following are laser crystals owned by Laser-crylink

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The active ions used in laser crystals are mainly transition metal ions and trivalent rare earth ions. The optical electrons of transition metal ions are 3d electrons located in the outer layer. In crystals, these optical electrons are susceptible to the direct effect of the surrounding crystal field. Therefore, their spectral characteristics vary greatly among crystals with different structure types. The 4f electron of trivalent rare earth ions is shielded by 5S and 5p outer electrons, which weakens the effect of crystal field. However, the perturbation of crystal field makes it possible for the forbidden 4f electron transition to produce narrow band absorption and fluorescence lines. So the spectra of trivalent rare earth ions in different crystals do not change as much as those of transition metal ions.The matrix crystals used in laser crystals are mainly oxides and fluorides. As a matrix crystal, besides its stable physical and chemical properties, it is easy to grow large-sized crystals with good optical uniformity and low cost. However, the adaptability between matrix cations and active ions, such as radius, electronegativity and valence state of matrix cations and active ions, should be considered as close as possible. In addition, the effect of matrix crystal field on the spectra of activated ions should also be considered. For some matrix crystals with special functions, laser with certain characteristics can be produced directly by doping activated ions. For example, in some non-linear crystals, laser generated by activated ions can be directly converted into harmonic output through matrix crystals.

Nd:YAG

Nd:YAG
Nd:YAG(掺钕钇铝石榴石)晶体是最早和最著名的激光晶体。由于它的很多基本性能优越, 故Nd:YA
Nd浓度公差(atm%)0.1- 2.5(+/-0.1)atm%
取向[001] or [110] or [111] <±0.5°
平行度10〞
垂直度
表面质量10-5(MIL-O-13830A)
波前畸变λ/4@632 nm
表面平整度λ/8@632 nm
透明光圈>95 %
倒角<0.2×45°
长度公差+0.5/-0mm
厚度/直径公差±0.05 mm
最大尺寸dia (3~12.7)×(3~150) mm
伤害阈值>750 MW/cm2@1064 nm 10 ns 10 Hz
芯片<0.1 mm
消光比>30 dB(取决于实际尺寸 )
筒体表面处理400 grit


Nd:YAG
Nd:YAG

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