Abstract
The neodymium-doped lanthanum beryllate (La2Be2O5 : Nd3+ or BEL : Nd) laser crystal is monoclinic, space group C2h6-C2/c. The fundamental vibration directions of light and the corresponding refractive indices have been determined as a function of wavelength. At 1 μm the indices are nX=1.9641, nY=1.9974, and nZ=2.0348. The energy levels of Nd3+ for the five lowest manifolds are presented. The low concentration limit for the Nd3+ 4F3/2 fluorescent lifetime in this crystal is 150 μsec and the two observed laser transitions have stimulated emission cross sections of 2.1×10−19 cm2 for E∥X and 1.5×10−19 cm2 for E∥Y. The laser wavelengths are 1.070 and 1.079 μm, respectively. In laser testing a higher slope efficiency was obtained in La2Be2O5 : Nd than in Y3Al5O12 : Nd (YAG : Nd). A Q-switched output of 450 mJ from a 6.4-mm-diam by 76-mm-long X-axis rod of BEL : Nd has been achieved for the 1.079-μm transition, while a YAG : Nd rod of the same size in the same system yielded 160 mJ. The higher Q-switched output in BEL : Nd is consistent with the lower stimulated emission cross sections as compared to that of YAG : Nd.
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