M. Brinker
5 Papers
6 Citations
M. Brinker is an academic researcher. The author has contributed to research in topics: Medicine & Scanning tunneling microscope. The author has an hindex of 3, co-authored 5 publications.
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Papers
Mesoscopic Structures and Coexisting Phases in Silica Films
Kristen M. Burson,Hyun Jin Yang,Daniel S. Wall,Thomas Marsh,Zechao Yang,David Kuhness,M. Brinker,Leonard Gura,Markus Heyde,Wolf-Dieter Schneider,Hans-Joachim Freund +10 more
TL;DR: In this article , mesoscale structures in silica films were examined with scanning tunneling microscopy (STM) images, showing that silica bilayer films exhibit vitreous character even in regions where the majority film structure is crystalline.
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The real honeycomb structure—From the macroscopic down to the atomic scale
Leonard Gura,M. Brinker,Patrik Marschalik,F. Kalaß,Heinz Junkes,Markus Heyde,Hans-Joachim Freund +6 more
TL;DR: In this paper , the authors detect honeycomb patterns and related complex network structures on different length scales ranging from macroscopic objects down to the atomic scale of 2D materials, and compare honeycomb structures with atomic network structures.
Resolving atomic diffusion in Ru(0001)−O(2×2) with spiral high-speed scanning tunneling microscopy
Leonard Gura,Zechao Yang,Joachim Paier,F. Kalaß,M. Brinker,Heinz Junkes,Markus Heyde,Hans-Joachim Freund +7 more
TL;DR: An intermediate state in atomic diffusion processes in the Ru(0001) layer was resolved with spiral high-speed scanning tunneling microscopy (STM) in this paper , where the diffusion of atomic oxygen in the adlayer has been studied by density functional theory and STM.
A high-speed variable-temperature ultrahigh vacuum scanning tunneling microscope with spiral scan capabilities.
Zechao Yang,Leonard Gura,F. Kalaß,Patrik Marschalik,M. Brinker,W. Kirstaedter,Jens Hartmann,Gero Thielsch,Heinz Junkes,Markus Heyde,Hans-Joachim Freund +10 more
TL;DR: In this article , a variable-temperature high-speed scanning tunneling microscope (STM) is presented, which consists of a two-chamber ultra-high vacuum system, including a preparation and a main chamber.
Dynamics in the O(2 × 1) adlayer on Ru(0001): bridging timescales from milliseconds to minutes by scanning tunneling microscopy
Leonard Gura,Zechao Yang,Joachim Paier,F. Kalaß,M. Brinker,Heinz Junkes,Markus Heyde,Hans-Joachim Freund +7 more
TL;DR: In this article, the dynamics within an O(2 × 1) adlayer on Ru(0001) is studied by density functional theory and high-speed scanning tunneling microscopy.