REFINE center, University of Connecticut, Storrs, Connecticut, United States of America.
Pulse Technologies Inc., Research and Development, Quakertown, Pennsylvania, United States of America.
PLoS One. 2023 May 3;18(5):e0285158. doi: 10.1371/journal.pone.0285158. eCollection 2023.
Cross sectioning is a critical sample preparation technique used in a wide range of applications, that enables investigation of buried layers and subsurface features or defects. State-of-the-art cross-sectioning methods, each have their own pros and cons, but generally suffer from a tradeoff between throughput and accuracy. Mechanical methods are fast but lack accuracy. On the other hand, ion-based methods, such as focused ion beam (FIB), offer high resolutions but are slow. Lasers, which can potentially improve this tradeoff, face multiple challenges that include creation of heat affected zones (HAZs), undesirably large spot size as well as material redeposition. In this work, we utilized, for the first time, a femtosecond pulsed laser, which has been shown to cause minimal to zero HAZ, for rapid creation of large cross sections that are comparable with FIB cross sections in quality. The laser was integrated with a targeted CO2 gas delivery system for redeposition control and beam tail curtailing, and a hard mask for top surface protection and further shrinkage of the effective spot size. The performance of the proposed system is showcased through real world examples that compare the throughput and quality resulted from the laser and FIB cross sectioning techniques.
切片是一种广泛应用的关键样本制备技术,可用于研究埋层和亚表面特征或缺陷。最先进的切片方法各有优缺点,但通常在吞吐量和准确性之间存在权衡。机械方法速度快但准确性差。另一方面,基于离子的方法,如聚焦离子束(FIB),提供了高分辨率,但速度较慢。激光可以潜在地改善这种权衡,但面临着多个挑战,包括产生热影响区(HAZ)、不理想的大光斑尺寸以及材料再沉积。在这项工作中,我们首次使用飞秒脉冲激光,该激光已被证明会导致最小到零的 HAZ,可快速创建与 FIB 切片质量相当的大截面。该激光与靶向 CO2 气体输送系统集成,用于再沉积控制和光束尾部截断,以及硬掩模用于顶部表面保护和进一步缩小有效光斑尺寸。通过实际示例展示了所提出系统的性能,这些示例比较了激光和 FIB 切片技术的吞吐量和质量。