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High-electric-field poling of nonlinear optical polymers

机译:非线性光学聚合物的高电场极化

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We have investigated electrical conduction phenomena during high-electric-field poling of a standard covalently functionalized DR-1 side-chain polymer. We performed electric current and second-harmonic measurements simultaneously to derive the effective internal field strength. Various metals and transparent indium tin oxide were used as electrodes. Current densities appeared to he interface (electrode) limited, with little dependence on the work function of the metal for the top electrode (Bardeen barrier at the electrode-dielectric interface), whereas for the bottom electrode-dielectric interface a dependence on the work function of the metal was observed. The field dependence of the current density was found to be Schottky charge emission for medium field strengths (E-POL less than or equal to 100 V/mu m), whereas it was dominated by Fowler-Nordheim tunneling at higher poling fields. In the presence of an additional inorganic barrier layer, significant suppression of tunneling was observed, which led to a reduced probability of singular breakdown events and shifted the limit of avalanche breakdown to higher internal effective poling field strengths. (C) 1998 Optical Society of America. [References: 73]
机译:我们已经研究了标准共价官能化DR-1侧链聚合物在高电场极化过程中的导电现象。我们同时进行了电流和二次谐波测量,以得出有效的内部场强。各种金属和透明的铟锡氧化物用作电极。电流密度似乎受到界面(电极)的限制,几乎不依赖于金属对顶部电极的功函(电极-电介质界面处的贝登势垒),而对于底部电极-电介质界面则依赖于功函观察到金属的%。发现电流密度的场依存性是中等场强(E-POL小于或等于100 V /μm)时的肖特基电荷发射,而在较高极化场时以Fowler-Nordheim隧穿为主。在存在额外的无机阻挡层的情况下,观察到显着的隧穿抑制作用,这导致奇异击穿事件的可能性降低,并将雪崩击穿的极限转移到更高的内部有效极化场强度。 (C)1998年美国眼镜学会。 [参考:73]

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