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Ultraviolet laser induced domain inversion on chromium coated lithium niobate crystals

机译:紫外激光诱导的镀铬铌酸锂晶体的畴反转

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Direct UV laser writing on chromium coated lithium niobate (LiNbO3) crystals is found to produce spontaneous domain inversion associated with the exposed UV laser tracks. Experimental evidence suggests that this effect is attributed to local out-diffusion of oxygen, reducing the LiNbO3 crystal surface due to the presence of chromium. The thin chromium film becomes hot and reactive after absorbing the UV laser radiation thus acting as an oxygen getter. This very efficient process enables the inversion of domains at lower intensities as compared to other direct laser based poling methods practically eliminating the deleterious surface damage induced by the direct absorption of the UV laser radiation by the crystal. Furthermore, the versatility of this domain fabrication method, is demonstrated by the production of inverted domain structures on Z-, Y- and 128°YX-cut substrates.
机译:发现在涂有铬的铌酸锂(LiNbO3)晶体上直接进行UV激光写入会产生与暴露的UV激光迹线相关的自发畴反转。实验证据表明,这种影响归因于氧气的局部向外扩散,由于存在铬而减少了LiNbO3晶体表面。铬薄膜吸收紫外线激光辐射后变热并具有反应性,因此起吸氧剂的作用。与其他基于激光的直接极化方法相比,这种非常有效的过程能够以较低的强度反转畴,从而实际上消除了晶体直接吸收UV激光辐射而引起的有害表面损伤。此外,通过在Z,Y和128°YX切割的基板上生产倒置畴结构,证明了该畴制造方法的多功能性。

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