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Numerical simulation of the lateral conductivity of a photoconductor surface

机译:光电导体表面横向电导率的数值模拟

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摘要

Lateral motion of charge carriers at the photoconductor surface is numerically calculated and analyzed. Surface conduction is assumed to take place in a very thin surface charge layer. Our findings, based on the assumption that surface conduction is the predominant factor for image blurring, lead us to believe that the carrier mobility at the surface is field dependent, and consequently surface conduction is not Ohmic, although it has the appearance of being so after a sufficient amount of time has elapsed. Using a field enhanced surface mobility, time-dependent dynamics of photogenerated charge carriers as they arrive at the surface and begin to spread out in the surface charge layer are accounted for by empirically approximating vertical charge motion with an exponential rise expression that closely mimics the behavior of the carriers as they reach the surface. We found that vertical charge motion has a negligibly small effect on surface conduction over a period of time relatively long compared to the vertical transit time of the carriers, and surface conduction can remove jaggedness inherent in certain features. A developed toner mass (DMA) estimation procedure is presented using electric fields and potential in the developer gap. Quantitative comparisons between measurements printed from a test print engine and calculated toner mass arising from surface conduction are made using different input bitmaps, which are in good agreement. Our DMA calculation procedure can account for variation in surface conduction rate and it is validated using two toner cartridges of significantly different surface conduction rates.
机译:数值计算并分析了载流子在光电导体表面的横向运动。假定表面传导发生在非常薄的表面电荷层中。基于表面传导是图像模糊的主要因素的假设,我们的发现使我们相信表面上的载流子迁移率是场相关的,因此表面传导不是欧姆性的,尽管它看起来像是经过了足够的时间。使用场增强的表面迁移率,光生电荷载流子到达表面并开始在表面电荷层中扩散时随时间变化的动力学通过以近似模拟行为的指数上升表达式来经验地近似垂直电荷运动来解决。载体到达水面的距离。我们发现,与载流子的垂直渡越时间相比,垂直电荷运动在相对较长的一段时间内对表面传导的影响微不足道,并且表面传导可以消除某些特征固有的锯齿。利用电场和显影剂间隙中的电势,提出了一种显影的调色剂质量(DMA)估计程序。使用不同的输入位图,可以对测试打印引擎打印的测量结果与由表面传导产生的计算出的墨粉质量进行定量比较,这非常吻合。我们的DMA计算程序可以解决表面电导率的变化,并且使用两个表面电导率明显不同的墨粉盒进行了验证。

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