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Updated: May 8, 2026

Fabrication of Periodic Gold Nanocup Arrays Using Colloidal Lithography
Published on: September 2, 2017
Fabrication of dense non-circular nanomagnetic device arrays using self-limiting low-energy glow-discharge processing
Zhen Zheng1, Long Chang, Ivan Nekrashevich
1Electrical and Computer Engineering, University of Houston, Houston, Texas, United States of America.
Abstract:
We describe a low-energy glow-discharge process using reactive ion etching system that enables non-circular device patterns, such as squares or hexagons, to be formed from a precursor array of uniform circular openings in polymethyl methacrylate, PMMA, defined by electron beam lithography. This technique is of a particular interest for bit-patterned magnetic recording medium fabrication, where close packed square magnetic bits may improve its recording performance. The process and results of generating close packed square patterns by self-limiting low-energy glow-discharge are investigated. Dense magnetic arrays formed by electrochemical deposition of nickel over self-limiting formed molds are demonstrated.

