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用于电润湿自适应光学的高折射率对比度和快速扫描速度的液体组合。

Liquid Combination with High Refractive Index Contrast and Fast Scanning Speeds for Electrowetting Adaptive Optics.

出版信息

Langmuir. 2018 Dec 4;34(48):14511-14518. doi: 10.1021/acs.langmuir.8b02849. Epub 2018 Nov 20.

Abstract

Electrowetting adaptive optical devices are versatile, with applications ranging from microscopy to remote sensing. The choice of liquids in these devices governs its tuning range, temporal response, and wavelength of operation. We characterized a liquid system, consisting of 1-phenyl-1-cyclohexene and deionized water, using both lens and prism devices. The liquids have a large contact angle tuning range, from 173 to 60°. Measured maximum scanning angle was realized at ±13.7° in a two-electrode prism, with simulation predictions of ±18.2°. The liquid's switching time to reach 90° contact angle from rest, in a 4 mm diameter device, was measured at 100 ms. Steady-state scanning with a two-electrode prism showed linear and consistent scan angles of ±4.8° for a 20 V differential between the two electrodes, whereas beam scanning using the liquid system achieved ±1.74° at 500 Hz for a voltage differential of 80 V.

摘要

电润湿自适应光学器件用途广泛,可应用于从显微镜到遥感等领域。这些器件中液体的选择决定了其调谐范围、时间响应和工作波长。我们使用透镜和棱镜器件对由 1-苯基-1-环己烯和去离子水组成的液体系统进行了特性描述。该液体具有大的接触角调谐范围,从 173 度到 60 度。在双电极棱镜中,测量到的最大扫描角度为±13.7 度,模拟预测的角度为±18.2 度。在直径为 4 毫米的器件中,液体从静止状态达到 90 度接触角的开关时间为 100 毫秒。双电极棱镜的稳态扫描显示,在两个电极之间的差分为 20 V 时,线性和一致的扫描角度为±4.8 度,而使用液体系统进行光束扫描时,在 80 V 的电压差下,可实现±1.74 度的扫描角度,频率为 500 Hz。

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