39 citations · 74 across the 6 of their papers we have counts for
5 papers · 1 filter
Vibrations and tunneling of strained nanoribbons at finite temperature
Paul Z. Hanakata, Sourav S. Bhabesh, David Yllanes +2
Crystalline sheets (e.g., graphene and transition metal dichalcogenides) liberated from a substrate are a paradigm for materials at criticality because flexural phonons can fluctua…
Anomalous thermal expansion in Ising-like puckered sheets
Paul Z. Hanakata, Abigail Plummer, David R. Nelson
Motivated by efforts to create thin nanoscale metamaterials and understand atomically thin binary monolayers, we study the finite temperature statistical mechanics of arrays of bis…
Forward and Inverse Design of Kirigami via Supervised Autoencoder
Paul Z. Hanakata, Ekin D. Cubuk, David K. Campbell +1
Machine learning (ML) methods have recently been used as forward solvers to predict the mechanical properties of composite materials. Here, we use a supervised-autoencoder (sAE) to…
Strain-induced gauge and Rashba fields in ferroelectric Rashba lead chalcogenide PbX monolayers (X = S, Se, Te)
Paul Z. Hanakata, A. S. Rodin, Harold S. Park +2
One of the exciting features of two-dimensional (2D) materials is their electronic and optical tunability through strain engineering. Previously, we found a class of 2D ferroelectr…
Two-dimensional Square Buckled Rashba Lead Chalcogenides
Paul Z. Hanakata, A. S. Rodin, Alexandra Carvalho +3
We propose the lead sulphide (PbS) monolayer as a 2D semiconductor with a large Rashba-like spin-orbit effect controlled by the out-of-plane buckling. The buckled PbS conduction ba…