硅酸盐学报
硅痠鹽學報
규산염학보
JOURNAL OF THE CHINESE CERAMIC SOCIETY
2008年
5期
622-625
,共4页
掺镁铟铌酸锂晶体%晶体缺陷%抗光损伤能力%倍频性能%提拉法
摻鎂銦鈮痠鋰晶體%晶體缺陷%抗光損傷能力%倍頻性能%提拉法
참미인니산리정체%정체결함%항광손상능력%배빈성능%제랍법
magnesium and indium co-doped lithium niobate crystal%crystal defect%photo-damage resistance ability%second har-monic generation property%Czochralski method
在同成分铌酸锂(LiNbO3,LN)体中掺入3%(摩尔分数,下同)MgO,并分别掺入0.5%,1%,1.5%In2O3,用提拉法生长了一系列Mg:In:LN晶体.通过紫外坷见吸收光谱测试确定了晶体样品的组成和缺陷结构.通过透射光斑畸变法检测Mg:In:LN晶体抗光损伤能力.结果表明:Mg:In:LN晶体抗光损伤能力比纯LN晶体提高2个数量级.以波长为1 064nm的Nd:YAG激光为基频光源,对Mg:In:LN晶体的倍频性能进行了测试.结果表明:Mg:In:LN晶体的相位匹配温度在室温附近,Mg:In:LN晶体的倍频效率要高于In:LN晶体和Mg:LN晶体.
在同成分鈮痠鋰(LiNbO3,LN)體中摻入3%(摩爾分數,下同)MgO,併分彆摻入0.5%,1%,1.5%In2O3,用提拉法生長瞭一繫列Mg:In:LN晶體.通過紫外坷見吸收光譜測試確定瞭晶體樣品的組成和缺陷結構.通過透射光斑畸變法檢測Mg:In:LN晶體抗光損傷能力.結果錶明:Mg:In:LN晶體抗光損傷能力比純LN晶體提高2箇數量級.以波長為1 064nm的Nd:YAG激光為基頻光源,對Mg:In:LN晶體的倍頻性能進行瞭測試.結果錶明:Mg:In:LN晶體的相位匹配溫度在室溫附近,Mg:In:LN晶體的倍頻效率要高于In:LN晶體和Mg:LN晶體.
재동성분니산리(LiNbO3,LN)체중참입3%(마이분수,하동)MgO,병분별참입0.5%,1%,1.5%In2O3,용제랍법생장료일계렬Mg:In:LN정체.통과자외가견흡수광보측시학정료정체양품적조성화결함결구.통과투사광반기변법검측Mg:In:LN정체항광손상능력.결과표명:Mg:In:LN정체항광손상능력비순LN정체제고2개수량급.이파장위1 064nm적Nd:YAG격광위기빈광원,대Mg:In:LN정체적배빈성능진행료측시.결과표명:Mg:In:LN정체적상위필배온도재실온부근,Mg:In:LN정체적배빈효솔요고우In:LN정체화Mg:LN정체.
A series of Mg:In:LiNbO3 (Mg:In:LN) crystals co-doped with 3% (mole fraction, the same below) MgO and 0.5%, 1% or1.5% In2O3 were grown by the Czochralski method. The crystal composition and structure defects were analyzed by ultravio-let-visible spectroscopy. The photo-damage resistance of the Mg:In:LN crystals was observed by straightly observing transmissionfacula distortion method. The results show that the photo-damage resistance of the Mg:In:LN crystals increases two orders of magni-tude compared with that of pure LN crystal. Using a Nd:YAG laser with a wavelength of 1 064nm as the fundamental frequency light,the second harmonic generation (SHG) property of the Mg:In:LN crystals was measured. The results show that the phase-matchingtemperature of the Mg:In:LN crystals is near room temperature, and the SHG efficiency of the Mg:In:LN crystals is higher than thatof Mg-doped and In-doped LN crystals.