Characterization of the pressure coefficient of manganin and temperature evolution of pressure in piston-cylinder cells
arXiv:2007.11703
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. In addition, we find that is almost pressure-independent for 60 K up to 2 GPa, but shows a pronounced dependence for 60K. Using this manganin manometer, we demonstrate that overall decreases with decreasing temperature in the piston-cylinder cell for the full pressure range and that the size of the pressure difference between room temperature and low temperatures ( K), , decreases with increasing pressure. We also compare the pressure values inferred from the magnanin manometer with the low-temperature pressure, determined from the superconducting transition temperature of elemental lead (Pb). As a result of these data and analysis we propose a practical algorithm to infer the evolution of pressure with temperature in a piston-cylinder cell.