arXiv · 2212.12181
High-yield production of quantum corrals in a surface reconstruction pattern
Abstract
The power of surface chemistry to create atomically precise nanoarchitectures offers intriguing opportunities to advance the field of quantum technology. Strategies for building artificial electronic lattices by individually positioning atoms or molecules result in precisely tailored structures but lack structural robustness. Here, taking the advantage of strong bonding of Br atoms on noble metal surfaces, we report the production of stable quantum corrals by dehalogenation of hexabromobenzene molecules on a preheated Au(111) surface. The byproducts, Br adatoms, are confined within a new surface reconstruction pattern and aggregate into nanopores with an average size of 3.7+-0.1 nm, which create atomic orbital-like quantum resonance states inside each corral due to the interference of scattered electron waves. Remarkably, the atomic orbitals can be hybridized into molecular-like orbitals with distinct bonding and anti-bonding states. Our study opens up an avenue to fabricate quantum structures with high yield and superior robustness.
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Wenzhen Dou, Meimei Wu, Biyu Song, Guoxiang Zhi, Chenqiang Hua, Miao Zhou, Tianchao Niu. 2022-12-23. High-yield production of quantum corrals in a surface reconstruction pattern. https://doi.org/10.1021/acs.nanolett.2c03814
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