首页> 外文会议>Conference on inorganic optical materials >Systematic studies on photorefractive crystal growth and properties of Cuand Mn-doped (K0.5Na0.5)0.2(Sr0.75Ba0.25) 0.9Nb2O6
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Systematic studies on photorefractive crystal growth and properties of Cuand Mn-doped (K0.5Na0.5)0.2(Sr0.75Ba0.25) 0.9Nb2O6

机译:铜锰掺杂(K0.5Na0.5)0.2(Sr0.75Ba0.25)0.9Nb2O6的光折变晶体生长及性能的系统研究

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Abstract: In this paper, photorefractive (PR) crystals of Cu and Mn- doped (K$-0.5$/Na$-0.5$/)$-0.2$/(Sr$-0.75$/Ba$-0.25$/)$- 0.9$/Nb$-2$/O$-6$/ were symmetrically studied. We reported the growth conditions, the absorption properties and the photorefractive properties including two wave mixing (TWM) and self-pumped phase conjugation (SPPC). The mechanism of Cu-doped KNSBN was referred briefly, and the influence of the different sites occupied by doping ions on PR properties was also discussed. All these results reveal that: (1) In Cu-doped KNSBN crystals, the photorefractive properties become better with the increase of the doping level, such as higher effective charge carrier density, larger coupling coefficient, faster response rate, higher SPPC reflectivity. (2) The thinner sample shows larger coupling gain coefficient, which is due to the light creep effect and beam fanning effect. The response time becomes shorter with the decrease of the thickness. (3) In Cu:KNSBN crystals, the coupling gain coefficient of TWM was obtained up to 35 cm$+$MIN@1$/. (4) In Cu:KNSBN and Mn:KNSBN samples, the SPPC reflectivity up to 73% have been obtained, respectively. (5) The C-site in the tungsten-bronze structure of KNSBN has an effect on the PR properties of the crystal. All these results show that doping in KNSBN is an effective method to improve the PR properties. The Cu-doped KNSBN crystal is a very promising photorefractive material.!20
机译:摘要:本文研究了铜和锰掺杂的光折变(PR)晶体(K $ -0.5 $ / Na $ -0.5 $ /)$-0.2 $ /(Sr $ -0.75 $ / Ba $ -0.25 $ /)对称地研究了$-0.9 $ / Nb $ -2 $ / O $ -6 $ /。我们报告了生长条件,吸收特性和光折变特性,包括两次波混(TWM)和自泵浦相共轭(SPPC)。简要介绍了Cu掺杂KNSBN的机理,并讨论了掺杂离子占据的不同位点对PR性能的影响。所有这些结果表明:(1)在掺铜的KNSBN晶体中,随着掺杂量的增加,光折变性能变得更好,例如更高的有效电荷载流子密度,更大的耦合系数,更快的响应速率,更高的SPPC反射率。 (2)较薄的样品显示出较大的耦合增益系数,这是由于光蠕变效应和光束扇形效应引起的。随着厚度的减小,响应时间变短。 (3)在Cu:KNSBN晶体中,TWM的耦合增益系数高达35 cm $ + $ MIN @ 1 $ /。 (4)在Cu:KNSBN和Mn:KNSBN样品中,分别获得了高达73%的SPPC反射率。 (5)KNSBN的钨青铜结构中的C位点对晶体的PR性质有影响。所有这些结果表明,在KNSBN中掺杂是改善PR性能的有效方法。掺铜的KNSBN晶体是非常有前途的光折变材料!20

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