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Understanding local forces in electrophoretic ink systems: utilizing optical tweezers to explore electrophoretic display devices

机译:了解电泳墨水系统中的局部力:利用光学镊子探索电泳显示设备

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摘要

Optical tweezers can be used as a valuable tool to characterize electrophoretic display (EPD) systems. EPDs are ubiquitous with e-readers and are becoming a commonplace technology where reflective, low-power displays are required; yet the physics of some features crucial to their operation remains poorly defined. We utilize optical tweezers as a tool to understand the motion of charged ink particles within the devices and show that the response of optically trapped electrophoretic particles can be used to characterize electric fields within these devices. This technique for mapping the force can be compared to simulations of the electric field in our devices, thus demonstrating that the electric field itself is the sole governor of the particle motion in an individual-particle regime. By studying the individual-particle response to the electric field, we can then begin to characterize particle motion in ‘real’ systems with many particles. Combining optical tweezing with particle tracking techniques, we can investigate deviations in many particle systems from the single-particle case.
机译:光学镊子可以用作表征电泳显示器(EPD)系统的有价值的工具。 EPD在电子阅读器中无处不在,并且正在成为需要反射型低功耗显示器的普遍技术。然而,对于某些功能至关重要的物理原理仍然不清楚。我们利用光镊作为工具来了解带电墨水粒子在设备内的运动,并表明光学捕获的电泳粒子的响应可用于表征这些设备内的电场。可以将这种映射力的技术与我们设备中电场的模拟进行比较,从而证明电场本身是单个粒子状态下粒子运动的唯一控制者。通过研究单个粒子对电场的响应,我们可以开始表征具有许多粒子的“真实”系统中的粒子运动。将光镊与粒子跟踪技术结合起来,我们可以研究许多粒子系统与单粒子情况的偏差。

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