Publication | Open Access
“Multipoint Force Feedback” Leveling of Massively Parallel Tip Arrays in Scanning Probe Lithography
13
Citations
20
References
2015
Year
EngineeringElectron-beam LithographyMicroscopyBiomedical EngineeringBeam LithographyMaterials FabricationProbe Lithography TechniquesNanolithographyNanometrologyInstrumentationNanolithography MethodNanotechnologyNanomanufacturingProbe LithographyScanning Probe LithographyMicrofabricationScanning Probe MicroscopyApplied PhysicsScanning Force MicroscopyNanofabricationPolymer Pen Lithography
Nanoscale patterning with massively parallel 2D array tips is of significant interest in scanning probe lithography. A challenging task for tip-based large area nanolithography is maintaining parallel tip arrays at the same contact point with a sample substrate in order to pattern a uniform array. Here, polymer pen lithography is demonstrated with a novel leveling method to account for the magnitude and direction of the total applied force of tip arrays by a multipoint force sensing structure integrated into the tip holder. This high-precision approach results in a 0.001° slope of feature edge length variation over 1 cm wide tip arrays. The position sensitive leveling operates in a fully automated manner and is applicable to recently developed scanning probe lithography techniques of various kinds which can enable "desktop nanofabrication."
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