JOURNAL ARTICLE

Reading Coaching for Math Word Problems.

Sharon A. EdwardsRobert W. MaloyGordon Anderson

Year: 2009 Journal:   Nanotechnology Vol: 29 (27)Pages: 275301-275301   Publisher: IOP Publishing

Abstract

Helium ion beam lithography (HIL) is an emerging nanofabrication technique. It benefits from a reduced interaction volume compared to that of an electron beam of similar energy, and hence reduced long-range scattering (proximity effect), higher resist sensitivity and potentially higher resolution. Furthermore, the small angular spread of the helium ion beam gives rise to a large depth of field. This should enable patterning on tilted and curved surfaces without the need of any additional adjustments, such as laser-auto focus. So far, most work on HIL has been focused on exploiting the reduced proximity effect to reach single-digit nanometer resolution, and has thus been concentrated on single-pixel exposures over small areas. Here we explore two new areas of application. Firstly, we investigate the proximity effect in large-area exposures and demonstrate HIL's capabilities in fabricating precise high-density gratings on large planar surfaces (100 μm × 100 μm, with pitch down to 35 nm) using an area dose for exposure. Secondly, we exploit the large depth of field by making the first HIL patterns on tilted surfaces (sample stage tilted 45°). We demonstrate a depth of field greater than 100 μm for a resolution of about 20 nm.

Keywords:
Reading (process) Word (group theory) Linguistics Coaching Computer science Mathematics education Mathematics Artificial intelligence Natural language processing Psychology Philosophy

Metrics

6
Cited By
0.31
FWCI (Field Weighted Citation Impact)
6
Refs
0.61
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Data Visualization and Analytics
Physical Sciences →  Computer Science →  Computer Vision and Pattern Recognition
Mathematics Education and Teaching Techniques
Social Sciences →  Social Sciences →  Education
Statistics Education and Methodologies
Physical Sciences →  Mathematics →  Statistics and Probability

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