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Vapor-phase proton-exchange in lithium tantalate for high-quality waveguides fabrication

机译:高品质波导制造的钽酸盐锂的气相质子交换

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Vapor-phase proton-exchange has been applied to lithium tantalate for the first time, as a waveguide fabrication technique. This technique provides alpha-phase waveguides without the need for annealing. A sealed ampoule set-up has been used employing pure benzoic acid as the vapor source. Various waveguides have been realized and optically characterized by means of standard m-lines spectroscopy. The profile shape is a step plus an exponential tail toward the substrate, as that found for vapor-phase proton-exchange waveguides in lithium niobate. The total depth of the refractive index profile increases with the exchange time, following a linear diffusion model. The ordinary index change has been determined by an interferometric method, giving values that confirmed the alpha-crystallographic phase of the fabricated waveguides. The propagation losses have been measured with a new method using an isosceles coupling prism and an out-coupling objective. The values found for the different modes of the various waveguides ranged from 0.5 to 0.8 dB/cm. An aging phenomenon in the fabricated waveguides has been observed during the first month after the exchange process. The extraordinary index change decreased of 5%, while the optical depth increased of 2%. Application of this technology to periodically poled substrates for QPM devices seems feasible.
机译:作为波导制造技术,第一阶段的气相质子交换首次应用于钽酸锂。该技术提供了α相波导而无需退火。已使用密封的安瓿设置,以使用纯苯的苯甲酸作为蒸气源。通过标准M线光谱学,已经实现了各种波导和光学表征。轮廓形状是朝向基板的一步加上指数尾,其用于铌酸锂中的气相质子交换波导。在线性扩散模型之后,折射率轮廓的总深度随着交换时间而增加。普通指标变化已经通过干涉测量方法确定,给出了确认制造波导的α结晶相的值。使用坐标耦合棱镜和外耦合物镜用新方法测量传播损耗。用于各种波导的不同模式的值范围为0.5至0.8dB / cm。在交流过程后的第一月期间已经观察到制造的波导中的老化现象。非凡指数变化减少了5%,而光学深度增加2%。这种技术在用于QPM器件的定期抛光基板的应用似乎是可行的。

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