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Photorefractive properties of strontium‐barium niobate

机译:锶连字符;铌酸钡的光折射特性

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We have grown and optically characterized strontium‐barium niobate crystals, including both undoped and cerium‐doped crystals having two different Sr/Ba ratios (61/39 and 75/25). By measuring the coupling of two optical beams in the crystals, we have determined the following photorefractive properties: the effective density, sign, and spectral response of the dominant charge carrier, the grating formation rate, dark conductivity, and carrier diffusion length. We find that electrons are the dominant photorefractive charge carriers in all of our samples; the typical density of photorefractive charges is ∼1×1016cm−3in the undoped samples. The grating formation rate increases with intensity, with a slope of ∼0.3 cm2/(W s) over an intensity range of ∼1–15 W/cm2in undoped samples. Cerium doping improves both the charge density (increased by a factor of ∼3) and the response rate per unit intensity (∼5 times faster).
机译:我们已经生长并光学表征了锶&连字符;铌酸钡晶体,包括具有两种不同 Sr/Ba 比(61/39 和 75/25)的未掺杂晶体和铈&连字符掺杂晶体。通过测量晶体中两束光束的耦合,我们确定了以下光折射特性:主要电荷载流子的有效密度、符号和光谱响应、光栅形成速率、暗电导率和载流子扩散长度。我们发现电子是我们所有样品中的主要光折射电荷载流子;光折射电荷的典型密度在未掺杂样品中为∼1×1016cm−3。光栅形成速率随强度的增加而增加,在∼1–15 W/cm2的强度范围内,斜率为∼0.3 cm2/(W s)。铈掺杂提高了电荷密度(增加 ∼3 倍)和单位强度响应率(快 ∼5 倍)。

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