Widefield imaging of superconductor vortices with electron spins in diamond
Yechezkel Schlussel, Till Lenz, Dominik Rohner, Yaniv Bar-Haim,, Lykourgos Bougas, David Groswasser, Michael Kieschnick, Evgeny Rozenberg,, Lucas Thiel, Amir Waxman, Jan Meijer, Patrick Maletinsky, Dmitry Budker and, Ron Folman

TL;DR
This paper introduces a novel wide-field imaging technique using NV centers in diamond to visualize vortices in high-temperature superconductors, enabling detailed magnetic studies across various temperatures.
Contribution
The work presents a new NV center-based magnetometry method for imaging superconductor vortices, allowing quantitative magnetic field measurements and vortex dynamics observation.
Findings
Quantitative vortex stray field measurements
Observation of vortex patterns under different cooling fields
Direct imaging of vortex pinning in disordered YBCO films
Abstract
Understanding the mechanisms behind high- Type-II superconductors (SC) is still an open task in condensed matter physics. One way to gain further insight into the microscopic mechanisms leading to superconductivity is to study the magnetic properties of the SC in detail, for example by studying the properties of vortices and their dynamics. In this work we describe a new method of wide-field imaging magnetometry using nitrogen-vacancy (NV) centers in diamond to image vortices in an yttrium barium copper oxide (YBCO) thin film. We demonstrate quantitative determination of the magnetic field strength of the vortex stray field, the observation of vortex patterns for different cooling fields and direct observation of vortex pinning in our disordered YBCO film. This method opens prospects for imaging of the magnetic-stray fields of vortices at frequencies from DC to several megahertz…
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