English

Traceably Calibrated Scanning Hall Probe Microscopy at Room Temperature

Instrumentation and Detectors 2020-11-17 v3

Abstract

Fabrication, characterization and comparison of gold and graphene micro- and nano-size Hall sensors for room temperature scanning magnetic field microscopy applications is presented. The Hall sensors with active areas from 5 μ\mum down to 50 nm were fabricated by electron-beam lithography. The calibration of the Hall sensors in an external magnetic field revealed a sensitivity of 3.2 mV/(AT) ±\pm 0.3 % for gold and 1615 V/(AT) ±\pm 0.5 % for graphene at room temperature. The gold sensors were fabricated on silicon nitride cantilever chips suitable for integration into commercial scanning probe microscopes, allowing scanning Hall microscopy (SHM) under ambient conditions and controlled sensor-sample distance. The height dependent stray field distribution of a magnetic scale was characterized using a 5 μ\mum gold Hall sensor. The uncertainty of the entire Hall sensor based scanning and data acquisition process was analyzed allowing traceably calibrated SHM measurements. The measurement results show good agreement with numerical simulations within the uncertainty budget.

Keywords

Cite

@article{arxiv.1910.12676,
  title  = {Traceably Calibrated Scanning Hall Probe Microscopy at Room Temperature},
  author = {Manuela Gerken and Aurélie Solignac and Davood Momeni Pakdehi and Alessandra Manzin and Thomas Weimann and Klaus Pierz and Sibylle Sievers and Hans Werner Schumacher},
  journal= {arXiv preprint arXiv:1910.12676},
  year   = {2020}
}

Comments

13 pages, 6 figures

R2 v1 2026-06-23T11:57:10.120Z