Hall Sensor Based Measurements of the Magnetic Phase Diagram of Superconducting Vanadium
Eshan Kemp, Daniel P. Newton, Ricky Parada

TL;DR
This study used a simple Hall sensor setup to measure the magnetic phase diagram of Vanadium, identifying its superconducting, vortex, and non-superconducting phases, and estimating critical fields at various temperatures.
Contribution
It presents a low-cost, undergraduate-level experimental method to determine Vanadium's magnetic phase diagram using Hall sensors.
Findings
Detected Meissner and vortex phases in Vanadium
Estimated critical fields and temperature lower than literature values
Results suggest impurities affect the measured critical parameters
Abstract
Vanadium is an elemental type-II superconductor which has a pure superconducting phase, a vortex phase, and a non-superconducting phase. We designed and carried out a low-budget experiment in our undergraduate physics lab to measure the magnetic field a close distance from the surface of a pure Vanadium disk sample isothermally with a Hall sensor across a range of different temperatures and external magnetic fields. We then used these measurements to compute the superconducting phase diagram of Vanadium. After completing measurements at eight temperatures ranging from 2.6K to 5K and magnetic fields ranging from -0.2T to 0.2T, we were able to detect the Meissner phase (clearly), and a vortex phase (less clearly). Using the graphs of the hall bar magnetic field versus external magnetic field, we were able to derive a rough estimate for the upper critical field and the lower critical field…
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Taxonomy
TopicsPhysics of Superconductivity and Magnetism · Diamond and Carbon-based Materials Research · Magnetic Field Sensors Techniques
