activity
20232025
most citedDefect complexes in CrSBr revealed through electron microscopy and deep learning

7 citations · 14 across the 5 of their papers we have counts for

collaborators

5 papers

cond-mat.mes-hall20255 cited

Quantitative electron beam-single atom interactions enabled by sub-20-pm precision targeting

Kevin M. Roccapriore, Frances M. Ross, Julian Klein

The ability to probe and control matter at the picometer scale is essential for advancing quantum and energy technologies. Scanning transmission electron microscopy offers powerful…

cond-mat.mtrl-sci20257 cited

Defect complexes in CrSBr revealed through electron microscopy and deep learning

Mads Weile, Sergii Grytsiuk, Aubrey Penn +9

Atomic defects underpin the properties of van der Waals materials, and their understanding is essential for advancing quantum and energy technologies. Scanning transmission electro…

cond-mat.mtrl-sci2025

Epitaxial formation of ultrathin HfO2 on graphene by sequential oxidation

Zhenjing Liu, Qian Mao, Varun Kamboj +6

We demonstrate the formation of epitaxial, ultrathin hafnia (HfO2) on graphene. Monoclinic hafnia (m-HfO2) forms as the end of a series of sequential oxidation reactions. Starting…

cond-mat.mtrl-sci20241 cited

Twist-induced spin splitting and spin-Hall-like effect in antiferromagnetic bilayers

Zhigang Song, Xiuying Zhang, Julian Klein +3

Momentum-resolved spin-polarized bands are a key ingredient in many proposed spintronic devices, but their existence often relies on lattice commensurability or strong spin-orbit c…

cond-mat.mtrl-sci20231 cited

Salt-assisted vapor-liquid-solid growth of one-dimensional van der Waals materials

Thang Pham, Kate Reidy, Joachim D. Thomsen +4

We have combined the benefits of two catalytic growth phenomena to form nanostructures of transition metal trichalcogenides (TMTs), materials that are challenging to grow in a nano…