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首页> 外文期刊>Nanoscale >Extraordinary optical transmission in nanopatterned ultrathin metal films without holes
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Extraordinary optical transmission in nanopatterned ultrathin metal films without holes

机译:非凡的光传输nanopatterned超薄金属电影没有洞

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We experimentally and theoretically demonstrate that a continuous gold film on a periodically textured substrate exhibits extraordinary optical transmission, even though no holes were etched in the film. Our film synthesis started by nanoimprinting a periodic array of nanocups with a period of similar to 750 nm on a polystyrene film over a glass substrate. A thin non-conformal gold film was sputter-deposited on the polystyrene by angle-directed deposition. The gold film was continuous with spatial thickness variation, the film being thinnest at the bottom of the nanocup. Measurements revealed an extraordinary transmission peak at a wavelength just smaller than the period, with an enhancement of similar to 2.5 compared to the classically expected value. Scattering matrix simulations model well the transmission and reflectance measurements when an ultrathin gold layer (similar to 5 nm), smaller than the skin depth is retained at the bottom of the nanocups. Electric field intensities are enhanced by >100 within the nanocup, and similar to 40 in the ultrathin gold layer causing transmission through it. We show a wavelength red-shift of similar to 30 nm in the extraordinary transmission peak when the nanocups are coated with a thin film of a few nanometers, which can be utilized for biosensing. The continuous corrugated metal films are far simpler structures to observe extraordinary transmission, circumventing the difficult process of etching the metal film. Such continuous metal films with ultrathin regions are simple platforms for non-linear optics, plasmonics, and biological and chemical sensing.
机译:我们实验和理论上证明定期连续黄金膜非凡的光学变形衬底展品被蚀刻在传播,即使没有漏洞这部电影。nanoimprinting nanocups的周期阵列一段类似于聚苯乙烯750海里电影在玻璃衬底。电影是sputter-deposited黄金聚苯乙烯angle-directed沉积。金膜与空间连续厚度变异,这部电影被薄的底部nanocup。非凡的透射峰波长比就小,提高类似于2.5相对于经典期望值。模型的传输和反射当一个测量超薄金层(类似于5 nm),比皮肤深度小保留nanocups的底部。> 100内的磁场强度增强nanocup,类似于40超薄的黄金层造成传播。类似于30 nm的波长红移非凡的传播nanocups时峰值涂几纳米的薄膜,这可以用于若。连续的波纹金属电影简单得多结构观察不同寻常的传播,绕过蚀刻的艰难的过程金属薄膜。超薄地区是简单的平台非线性光学、等离子、生物和化学传感。

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