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Effect of bias in ferroelectric-antiferroelectric relaxation

机译:偏压对铁电-铁电弛豫的影响

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The ferroelectric-antiferroelectric transition in greyscale generation of antiferroelectric liquid crystal displays (AFLC) is a heterogeneous process. The process has been described as the growth of finger-like domains [1]. We have previously studied the ferroelectric-antiferroelectric phase transition, relaxation that follows the data pulse in surface stabilized asymmetric antiferroelectric liquid crystal displays using biasless video frequency waveforms [2]. This relaxation involves an intensity decay of the light transmitted by a pixel and depends on several parameters such as surface stabilization, rotational viscosity of the AFLC, magnitude of the data pulse, and bias voltage. The usual multiplexed driving of AFLC displays leads to long-term stabilisation of the grey levels induced by the data pulses within the selection time. However, depending on the bias level, alternative greyscale mechanisms may be obtained by allowing the grey levels to decay during the frametime. These greyscales may be advantageous in some instances since they improve the dynamic response of the AFLC device and reduce the reset time of the waveform. In this study we extend the previous work to include the effect of bias. We present the measured data, in terms of growth pattern and speed and present an extension of the previously model on order to explain the results.
机译:反铁电液晶显示器(AFLC)灰度级生成中的铁电-反铁电转变是一个异质过程。该过程被描述为手指状结构域的生长[1]。我们以前已经研究了使用无偏置视频波形的表面稳定的不对称反铁电液晶显示器中数据脉冲之后的铁电-反铁电相变,弛豫[2]。这种弛豫涉及像素所透射的光的强度衰减,并且取决于几个参数,例如表面稳定性,AFLC的旋转粘度,数据脉冲的大小和偏置电压。 AFLC显示器的常规多路驱动导致在选择时间内由数据脉冲引起的灰度级长期稳定。但是,根据偏差级别,可以通过允许灰度级在帧时间内衰减来获得其他灰度机制。这些灰度在某些情况下可能是有利的,因为它们改善了AFLC设备的动态响应并减少了波形的复位时间。在这项研究中,我们将先前的工作扩展到包括偏见的影响。我们根据增长模式和速度提供了测得的数据,并对以前的模型进行了扩展以解释结果。

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