English

Encoding multistate charge order and chirality in endotaxial heterostructures

Materials Science 2023-09-06 v3

Abstract

High-density phase change memory (PCM) storage is proposed for materials with multiple intermediate resistance states, which have been observed in 1TT-TaS2_2 due to charge density wave (CDW) phase transitions. However, the metastability responsible for this behavior makes the presence of multistate switching unpredictable in TaS2_2 devices. Here, we demonstrate the fabrication of nanothick verti-lateral HH-TaS2_2/1TT-TaS2_2 heterostructures in which the number of endotaxial metallic HH-TaS2_2 monolayers dictates the number of resistance transitions in 1TT-TaS2_2 lamellae near room temperature. Further, we also observe optically active heterochirality in the CDW superlattice structure, which is modulated in concert with the resistivity steps, and we show how strain engineering can be used to nucleate these polytype conversions. This work positions the principle of endotaxial heterostructures as a promising conceptual framework for reliable, non-volatile, and multi-level switching of structure, chirality, and resistance.

Keywords

Cite

@article{arxiv.2303.04387,
  title  = {Encoding multistate charge order and chirality in endotaxial heterostructures},
  author = {S. Husremović and B. H. Goodge and M. Erodici and K. Inzani and A. Mier and S. M. Ribet and K. C. Bustillo and T. Taniguchi and K. Watanabe and C. Ophus and S. M. Griffin and D. K. Bediako},
  journal= {arXiv preprint arXiv:2303.04387},
  year   = {2023}
}
R2 v1 2026-06-28T09:06:53.699Z