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20162022
most citedMinimum-Strain Symmetrization of Bravais Lattices

4 citations · 4 across the 3 of their papers we have counts for

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cond-mat.mtrl-sci2022

Computational exfoliation of atomically thin 1D materials with application to Majorana bound states

Hadeel Moustafa, Peter Mahler Larsen, Morten N. Gjerding +3

We introduce a computational database with calculated structural, thermodynamic, electronic, magnetic, and optical properties of 820 one-dimensional materials. The materials are sy…

cond-mat.mtrl-sci2020

Resolving pseudosymmetry in tetragonal ZrO2 using EBSD with a modified dictionary indexing approach

Edward L. Pang, Peter M. Larsen, Christopher A. Schuh

Resolving pseudosymmetry has long presented a challenge for electron backscatter diffraction (EBSD) and has been notoriously challenging in the case of tetragonal ZrO2 in particula…

cond-mat.mtrl-sci2019★ 4 cited

Minimum-Strain Symmetrization of Bravais Lattices

Peter M. Larsen, Edward L. Pang, Pablo A. Parrilo +1

Bravais lattices are the most fundamental building blocks of crystallography. They are classified into groups according to their translational, rotational, and inversion symmetries…

cond-mat.mtrl-sci2019

Global optimization for accurate determination of EBSD pattern centers

Edward L. Pang, Peter M. Larsen, Christopher A. Schuh

Accurate pattern center determination has long been a challenge for the electron backscatter diffraction (EBSD) community and is becoming critically accuracy-limiting for more rece…

cond-mat.mtrl-sci2018

Definition of a scoring parameter to identify low-dimensional materials components

Peter Mahler Larsen, Mohnish Pandey, Mikkel Strange +1

The last decade has seen intense research in materials with reduced dimensionality. The low dimensionality leads to interesting electronic behavior due to electronic confinement an…

cond-mat.mtrl-sci2017

Rich Ground State Chemical Ordering in Nanoparticles: Exact Solution of a Model for Ag-Au Clusters

Peter Mahler Larsen, Karsten Wedel Jacobsen, Jakob Schiøtz

We show that nanoparticles can have very rich ground state chemical order. This is illustrated by determining the chemical ordering of Ag-Au 309-atom Mackay icosahedral nanoparticl…