English

Imaging superconducting weak spots through vortex-assisted THz near-field photovoltage

Superconductivity 2026-07-01 v1 Mesoscale and Nanoscale Physics

Abstract

Nanoscale inhomogeneities are a defining feature of many superconducting materials, yet their local electromagnetic response has remained difficult to access experimentally. This is because their relevant energy scale lies in the terahertz range, where wavelengths -- on the order of hundreds of microns -- are too large to spatially resolve nanoscopic variations. Here, we demonstrate the first application of THz near-field photovoltage nanoscopy in a superconductor, achieving 300 nm spatial resolution at 2.52 THz. Scanning a current-biased NbN strip, we reveal photovoltage peaks within the bulk associated with nanoscopic defects of reduced superfluid density. The observed photovoltage follows the evolution of the vortex-dissipative state and is attributed to enhanced vortex-antivortex pair nucleation at defect sites. Together, these results open a direct route to probing how material inhomogeneities influence light-matter interactions in superconductors, with implications for superconducting devices and strongly inhomogeneous systems such as high-Tc and moir\'e materials.

Keywords

Cite

@article{arxiv.2607.00914,
  title  = {Imaging superconducting weak spots through vortex-assisted THz near-field photovoltage},
  author = {Sergio J. Salvía-Fernández and Ekaterina Khestanova and Zoe Velluire-Pellat and Leonardo R. Cadorim and Sergi Batlle-Porro and David A. Czaplewski and Johann Osmond and Sebastian Castilla and Adrian Bachtold and Milorad V. Milošević and Aharon Kapitulnik and Frank H. L. Koppens},
  journal= {arXiv preprint arXiv:2607.00914},
  year   = {2026}
}

Comments

13 pages, 4 figures