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Mechanism of Immersion-Specific Defects with High Receding Angle Topcoat

机译:高后倾角面漆的特定浸入缺陷机理

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A dynamic receding contact angle (RCA) is a well-known guideline to estimate the degree of watermark (WM) defects, which shapes circle and bridges inside of the defect and reduces with enlarging the RCA of topcoat (TC). However, our recent investigation revealed the occurrence of the circular shape defects in spite of using the TC with a large RCA, bringing about a change of line and space pattern pitch. In this paper, we clarify the origin of these defects and propose a new key factor of the dynamic surface properties of immersion-specific defects. It was found that the pitch-change defect is caused by the lens effect of the air bubbles embedded between advancing water meniscus and the TC. To well understand generation of the bubble defects, we defined the "effective" hysteresis (EH) as the hysteresis of dynamic contact angle taken the effects of water-absorption into account. An analysis with the EH indicates that the bubble defect arises from not only to the large ACA but also small amount of water uptake and the amount of water-absorption could be substituted by the dissolution rate of TC. It was demonstrated that the EH proposed is a new key factor for estimating the number of bubble defects. The EH is very useful for analyzing the bubble defects in immersion lithography. The characteristics of the bubble defect are also discussed with a focus on the structure of the polymer attached to water.
机译:动态后退接触角(RCA)是估算水印(WM)缺陷程度的众所周知的准则,水印可塑造缺陷内部的圆形和桥接,并随着面漆(TC)的RCA的增大而减小。然而,我们最近的调查显示,尽管使用了具有较大RCA的TC,但仍出现了圆形缺陷,从而改变了线距和间距。在本文中,我们阐明了这些缺陷的根源,并提出了浸没特定缺陷的动态表面特性的新关键因素。已经发现,音高变化缺陷是由嵌入在前进的水弯液面和TC之间的气泡的透镜效应引起的。为了充分理解气泡缺陷的产生,我们将“有效”磁滞(EH)定义为动态接触角的磁滞,其中考虑了吸水的影响。用EH的分析表明,气泡缺陷不仅是由于较大的ACA引起的,而且是由于少量的吸水引起的,并且吸水量可以由TC的溶解速率代替。事实证明,提出的EH是估算气泡缺陷数量的新关键因素。 EH对于分析浸没式光刻中的气泡缺陷非常有用。还讨论了气泡缺陷的特征,重点是附着在水上的聚合物的结构。

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