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Blue SHG characteristics and homogeneity of the TSSG grown potassium lithium niobate (KLN) crystal with high Li2O content
Journal article   Peer reviewed

Blue SHG characteristics and homogeneity of the TSSG grown potassium lithium niobate (KLN) crystal with high Li2O content

T.C. Chong, X.W. Xu, G.Y. Zhang and H. Kumagai
Journal of crystal growth, Vol.225(2-4), pp.489-494
01/05/2001

Abstract

A2. Top seeded solution growth B1. Niobates B2. Nonlinear optic materials
The high quality and crack-free KLN crystal with high Li2O content has been grown along the 〈110〉 axis by the TSSG method from the melt of 31mol% K2O, 26mol% Li2O and 43mol% Nb2O5. The size of the as-grown KLN crystal is about 6×9×29mm3. The XRD analysis gives the lattice constant a=12.583Å, and c=4.041Å near the c value of the stoichiometric KLN. The Curie temperature of this crystal is determined to be 540°C by the dielectric constant measurement. The blue SHG characteristics of the KLN crystal are investigated by using a 3900S Ti: sapphire CW tunable laser. The FWHMs of the wavelength- and temperature-tuning curves for the NCPM SHG are determined to be 0.4nm and 1.2°C, respectively. The blue laser light with 1.45mW output at 416.7nm is achieved at room temperature by the single-pass SHG for 903mW input power. The blue SHG conversion efficiency is estimated to be 0.25%/W that is the highest value obtained up to now. The temperature-tuned blue laser light with continuous output from 416.7 to 423.5nm is obtained by increasing the crystal temperature from 23.5°C to 80°C. The temperature coefficient of the NCPM wavelength is 0.295nm/°C. The investigated KLN crystal, especially its middle part, has a good homogeneity of the room temperature NCPM wavelength along the growth axis (<2nm).

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