We report the development of a technique to measure heat capacity at large uniaxial pressure using a piezoelectric-driven device generating compressive and tensile strain in the sample. Our setup is optimized for temperatures ranging from 8 K down to millikelvin. Using an AC heat-capacity technique, we are able to achieve an extremely high resolution and to probe a homogeneously strained part of the sample. We demonstrate the capabilities of our setup on the unconventional superconductor Sr2RuO4. By replacing thermometer and adjusting the remaining setup accordingly, the temperature regime of the experiment can be adapted to other temperature ranges of interest. © 2020 Author(s)
We have measured the temperature dependence of the resistivity of Sr2RuO4 under pressure under hydro...
One of the main developments in unconventional superconductivity in the past two decades has been th...
Sr2RuO4 is an unconventional superconductor that has attracted widespread study because of its high ...
We report the development of a technique to measure heat capacity at large uniaxial pressure using a...
The most-discussed pairing symmetry in Sr₂RuO₄ is chiral p-wave, ₓ ± [sub], whose degeneracy is prot...
We present a design for a piezoelectric-driven uniaxial stress cell suitable for use at ambient and ...
Funding: Parts of this work were funded by the Deutsche Forschungsgemeinschaft (DFG, German Research...
Funding: We gratefully acknowledge support from the European Research Council (Grant No. ERC-714193-...
We report a combined experimental and theoretical study of the dependence of the superconductivity o...
"September 1964.""AEC Contract No. W-7405-eng-48."Thesis (Ph. D. in Chemistry)--University of Califo...
We report the design and construction of piezoelectric-based apparatus for applying continuously tun...
A sensitive probe of unconventional order is its response to a symmetry-breaking field. To probe the...
In the field of high-temperature superconductivity there has been no increase in the critical temper...
We report the results of a combined study of the normal-state resistivity and superconducting transi...
Pressure represents a clean tuning parameter for traversing the complex phase diagrams of interactin...
We have measured the temperature dependence of the resistivity of Sr2RuO4 under pressure under hydro...
One of the main developments in unconventional superconductivity in the past two decades has been th...
Sr2RuO4 is an unconventional superconductor that has attracted widespread study because of its high ...
We report the development of a technique to measure heat capacity at large uniaxial pressure using a...
The most-discussed pairing symmetry in Sr₂RuO₄ is chiral p-wave, ₓ ± [sub], whose degeneracy is prot...
We present a design for a piezoelectric-driven uniaxial stress cell suitable for use at ambient and ...
Funding: Parts of this work were funded by the Deutsche Forschungsgemeinschaft (DFG, German Research...
Funding: We gratefully acknowledge support from the European Research Council (Grant No. ERC-714193-...
We report a combined experimental and theoretical study of the dependence of the superconductivity o...
"September 1964.""AEC Contract No. W-7405-eng-48."Thesis (Ph. D. in Chemistry)--University of Califo...
We report the design and construction of piezoelectric-based apparatus for applying continuously tun...
A sensitive probe of unconventional order is its response to a symmetry-breaking field. To probe the...
In the field of high-temperature superconductivity there has been no increase in the critical temper...
We report the results of a combined study of the normal-state resistivity and superconducting transi...
Pressure represents a clean tuning parameter for traversing the complex phase diagrams of interactin...
We have measured the temperature dependence of the resistivity of Sr2RuO4 under pressure under hydro...
One of the main developments in unconventional superconductivity in the past two decades has been th...
Sr2RuO4 is an unconventional superconductor that has attracted widespread study because of its high ...