English

Observation of Macroscopic Nonlocal Voltage at Room Temperature

Strongly Correlated Electrons 2026-04-20 v2

Abstract

Electrons in conductors suffer frequent scatterings with defects and phonons, and the diffusive macroscopic behaviors are determined by an external electric field through Ohms law. If electrons are no longer diffusive, the Ohmic description collapses. In devices composed of thin chalcogenides and YBa2Cu3O7, we observe a transition from an Ohmic conductor to a nonlocal conductor below a certain temperature. The nonlocal conductor is characterized by significant nonlocal voltages (~0.1 V) across macroscopic regions (~1 mm) that are conventionally considered to be equipotential. Nonlinear responses are an additional characteristic. Negative local resistances in a vicinal geometry support macroscopic hydrodynamic flow as the underlying mechanism, implying electron momentum conservation over incredibly long distances. This new conduction state, observable at room temperature, opens the field of nonlocal electronics and low-dissipation applications.

Keywords

Cite

@article{arxiv.2507.06548,
  title  = {Observation of Macroscopic Nonlocal Voltage at Room Temperature},
  author = {Jae Ho Jeon and Hong Ryeol Na and Sahng-Kyoon Jerng and Seyoung Kwon and Sungkyun Park and Kang Rok Choe and Jun Sung Kim and Heeju Kim and Gunn Kim and Sangmin Ji and Taegeun Yoon and Young Jae Song and Dirk Wulferding and Jeong Kim and Hwayong Noh and Seung-Hyun Chun},
  journal= {arXiv preprint arXiv:2507.06548},
  year   = {2026}
}

Comments

Macroscopic nonlocal phenomena extended to a range of materials