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Development of an operational high refractive index resist for 193nm immersion lithography

机译:开发用于193nm浸没式光刻的高折射率抗蚀剂

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摘要

Generation-three (Gen-3) immersion lithography offers the promise of enabling the 32nm half-pitch node. For Gen-3 lithography to be successful, however, there must be major breakthroughs in materials development: The hope of obtaining numerical aperture imaging 1.70 is dependent on a high index lens, fluid, and resist. Assuming that a fluid and a lens will be identified, this paper focuses on a possible path to a high index resist. Simulations have shown that the index of the resist should be 1.9 with any index higher than 1.9 leading to an increased process latitude. Creation of a high index resist from conventional chemistry has been shown to be unrealistic. The answer may be to introduce a high index, polarizable material into a resist that is inert relative to the polymer behavior, but will this too degrade the performance of the overall system? The specific approach is to add very high index (~2.9) nanoparticles to an existing resist system. These nanoparticles have a low absorbance; consequently the imaging of conventional 193nm resists does not degrade. Further, the nanoparticles are on the order of 3nm in diameter, thus minimizing any impact on line edge roughness (LER).
机译:第三代(第三代)浸没式光刻技术有望实现32nm半间距节点。但是,要使第三代光刻技术成功,必须在材料开发方面取得重大突破:获得数值孔径成像1.70的希望取决于高折射率透镜,流体和抗蚀剂。假设将识别出液体和透镜,本文将重点探讨通向高折射率抗蚀剂的可能途径。仿真表明,抗蚀剂的折射率应为1.9,任何高于1.9的折射率都将导致加工范围的增加。由常规化学方法制造高折射率抗蚀剂已被证明是不现实的。答案可能是将高折射率的可极化材料引入相对于聚合物性能呈惰性的抗蚀剂,但这是否还会降低整个系统的性能?具体方法是在现有的抗蚀剂系统中添加非常高的折射率(约2.9)纳米颗粒。这些纳米颗粒的吸光度低。因此,常规193nm抗蚀剂的成像不会降低。此外,纳米颗粒的直径约为3nm,因此使对线边缘粗糙度(LER)的任何影响最小化。

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