论文标题

超薄的瓦楞纸层作为大面积传输二极管

Ultra-thin corrugated metamaterial film as large-area transmission dynode

论文作者

Chan, H. W., Prodanović, V., Theulings, A. M. M. G., Bruggencate, T. ten, Hagen, C. W., Sarro, P. M., van der Graaf, H.

论文摘要

通过将超薄连续膜沉积在具有3维图案的硅晶片上,制造大面积传输点。去除硅后,形成了具有增强机械性能的波纹膜。机械材料(例如这种波纹膜)经过设计以提高其强度和稳健性,这使其与扁平膜相比,薄膜厚度保持恒定相比,它可以跨越更大的表面。超薄胶片由三层(Al $ _2 $ o $ _3 $ /TIN /Al $ _2 $ o $ _3 $)组成,并由原子层沉积(ALD)存放。封装的锡层提供了平面电导率,这是维持次级电子发射所需的。制造了两种类型的波纹膜:六角蜂窝和八角形图案。后者的设计旨在匹配CMOS像素芯片的平方距离。使用扫描电子显微镜使用基于收集器的方法确定透射二级电子产率。在具有八角形图案的膜上测量最高的透射电子产率。对于3.15 KEV事件电子的Al $ _2 $ o $ $ _3 $/tin/al $ _2 $ o $ _3 $ _3 $ tri-layer膜,厚度为10/5/15 nm。通过构造产量图确定瓦楞膜表面跨表面的产量变化。用于透射二级电子发射的活性表面接近100%,即,无论对瓦楞膜的影响点如何,主电子都会产生透射二级电子。

Large-area transmission dynodes were fabricated by depositing an ultra-thin continuous film on a silicon wafer with a 3-dimensional pattern. After removing the silicon, a corrugated membrane with enhanced mechanical properties was formed. Mechanical materials, such as this corrugated membrane, are engineered to improve its strength and robustness, which allows it to span a larger surface in comparison to flat membranes while the film thickness remains constant. The ultra-thin film consists of three layers (Al$_2$O$_3$ /TiN/Al$_2$O$_3$) and is deposited by atomic layer deposition (ALD). The encapsulated TiN layer provides in-plane conductivity, which is needed to sustain secondary electron emission. Two types of corrugated membranes were fabricated: a hexagonal honeycomb and an octagonal pattern. The latter was designed to match the square pitch of a CMOS pixel chip. The transmission secondary electron yield was determined with a collector-based method using a scanning electron microscope. The highest transmission electron yield was measured on a membrane with an octagonal pattern. A yield of 2.15 was achieved for 3.15 keV incident electrons for an Al$_2$O$_3$ /TiN/Al$_2$O$_3$ tri-layer film with layer thicknesses of 10/5/15 nm. The variation in yield across the surface of the corrugated membrane was determined by constructing a yield map. The active surface for transmission secondary electron emission is near 100%, i.e. a primary electron generates transmission secondary electrons regardless of the point of impact on the corrugated membrane.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源