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Proton beam writing using the high energy ion nanoprobe LIPSION

✍ Scribed by F. Menzel; D. Spemann; J. Lenzner; J. Vogt; T. Butz


Publisher
Elsevier Science
Year
2005
Tongue
English
Weight
264 KB
Volume
231
Category
Article
ISSN
0168-583X

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✦ Synopsis


Proton beam writing (PBW) is a very unique technique capable of the direct creation of three dimensional structures with a very high aspect ratio. Since the high energy ion nanoprobe LIPSION has a very high spatial resolution and is therefore well suited for the creation of structures in the micrometre range or below, it is planned to establish the PBW technique at the University of Leipzig. The results of the first proton beam writing experiments at the LIPSION nanoprobe are presented in this article. Structures with high aspect ratio and smooth side walls with an edge definition of 0.2 lm were created in negative SU-8 photo resist using 2.25 MeV protons. Furthermore, investigations were carried out concerning the mechanical stability of single free standing walls in order to collect information for the targeted production of samples with smaller feature sizes in the submicrometre range. Up to now, wall widths down to 1.5 lm were achieved. However, smaller feature sizes could not be obtained due to beam spot fluctuations which enlarge the wall width by a factor of three. Self-supported structures were produced using 2.25 MeV protons and subsequently 1.5 MeV helium ions demonstrating the stability and accuracy of these real three dimensional structures. In addition, different methods for online dose normalization were tested showing that ionoluminescence is the most suitable method for this purpose.


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✍ F. Menzel; D. Spemann; S. Petriconi; J. Lenzner; T. Butz πŸ“‚ Article πŸ“… 2006 πŸ› Elsevier Science 🌐 English βš– 342 KB

Proton beam writing (PBW) is a direct writing technique which allows the creation of three-dimensional structures with a high aspect ratio in the micrometer and nanometer range in photoresist materials without the use of templates. At the high-energy ion nanoprobe LIPSION of the University of Leipzi