Characterization of the pressure coefficient of manganin and temperature evolution of pressure in piston-cylinder cells
Li Xiang, Elena Gati, Sergey L. Bud'ko, Raquel A. Ribeiro, Arif Ata,, Ulrich Tutsch, Michael Lang, Paul C. Canfield

TL;DR
This study measures how manganin's resistance varies with temperature and pressure to accurately track pressure changes in piston-cylinder cells, revealing the temperature and pressure dependence of the pressure coefficient and proposing a practical pressure inference method.
Contribution
It provides detailed characterization of the pressure coefficient of manganin across a wide temperature and pressure range, enabling improved pressure measurements in low-temperature experiments.
Findings
The pressure coefficient of manganin varies with temperature, decreasing then increasing at low temperatures.
The pressure decreases with temperature in piston-cylinder cells, with the pressure difference reducing at higher pressures.
A practical algorithm for inferring pressure evolution with temperature in piston-cylinder cells is proposed.
Abstract
We report measurements of the temperature- and pressure-dependent resistance, , of a manganin manometer in a He-gas pressure setup from room temperature down to the solidification temperature of He ( 50 K at 0.8 GPa) for pressures, , between 0 GPa and 0.8 GPa. The same manganin wire manometer was also measured in a piston-cylinder cell from 300 K down to 1.8 K and for pressures between 0 GPa to 2 GPa. From these data, we infer the temperature and pressure dependence of the pressure coefficient of manganin, , defined by the equation where and are the resistance of manganin at ambient pressure and finite pressure, respectively. Our results indicate that upon cooling first decreases, then goes through a broad minimum at 120 K and increases again towards lower temperatures.…
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Taxonomy
TopicsPhysics of Superconductivity and Magnetism · Iron-based superconductors research · Advanced Condensed Matter Physics
