We have measured the temperature and field dependence of the resistivity of the unconventional superconductor Sr2RuO4 at pressures up to 3.3 GPa. Using the Shubnikov-de Haas effect, we find that the Fermi surface sheet believed to be primarily responsible for superconductivity becomes more two-dimensional with increasing pressure, a surprising result that is, however, consistent with a recent model of orbital-dependent superconductivity in this system. Many-body enhancements and the superconducting transition temperature all fall gradually with increasing pressure, contrary to previous suggestions of a ferromagnetic quantum critical point at similar to3 GPa
Applying in-plane uniaxial pressure to strongly correlated low-dimensional systems has been shown to...
Sr2RuO4 is a layered superconductor with a Tc ≈ 0.95 K. The electrical resistivity is strongly...
The oxide superconductor Sr2RuO4 is emerging as an archetypal strongly correlated electron system. W...
We have measured the temperature and field dependence of the resistivity of the unconventional super...
We have measured the temperature and field dependence of the resistivity of the unconventional super...
We have measured the temperature dependence of the resistivity of Sr2RuO4 under pressure under hydro...
We have measured the temperature dependence of the resistivity of Sr\(_2\)RuO\(_4\) under pressure u...
We report the results of a combined study of the normal-state resistivity and superconducting transi...
We investigated pressure dependence of the electrical resistivity of the only copper-free layered-pe...
Applying in-plane uniaxial pressure to strongly correlated low-dimensional systems has been shown to...
The layered perovskite oxide Sr2RuO4 appears to be an ideal material to investigate unconventional s...
Applying in-plane uniaxial pressure to strongly correlated low-dimensional systems has been shown to...
In this paper, we review a large set of experimental data acquired over the past decade by several g...
We present resistivity measurements on high-purity single crystals of \(Sr_2RuO_4\) and \(Sr_3Ru_2O_...
Quantum phase transitions are among the most intriguing topics in modern condensed matter physics. I...
Applying in-plane uniaxial pressure to strongly correlated low-dimensional systems has been shown to...
Sr2RuO4 is a layered superconductor with a Tc ≈ 0.95 K. The electrical resistivity is strongly...
The oxide superconductor Sr2RuO4 is emerging as an archetypal strongly correlated electron system. W...
We have measured the temperature and field dependence of the resistivity of the unconventional super...
We have measured the temperature and field dependence of the resistivity of the unconventional super...
We have measured the temperature dependence of the resistivity of Sr2RuO4 under pressure under hydro...
We have measured the temperature dependence of the resistivity of Sr\(_2\)RuO\(_4\) under pressure u...
We report the results of a combined study of the normal-state resistivity and superconducting transi...
We investigated pressure dependence of the electrical resistivity of the only copper-free layered-pe...
Applying in-plane uniaxial pressure to strongly correlated low-dimensional systems has been shown to...
The layered perovskite oxide Sr2RuO4 appears to be an ideal material to investigate unconventional s...
Applying in-plane uniaxial pressure to strongly correlated low-dimensional systems has been shown to...
In this paper, we review a large set of experimental data acquired over the past decade by several g...
We present resistivity measurements on high-purity single crystals of \(Sr_2RuO_4\) and \(Sr_3Ru_2O_...
Quantum phase transitions are among the most intriguing topics in modern condensed matter physics. I...
Applying in-plane uniaxial pressure to strongly correlated low-dimensional systems has been shown to...
Sr2RuO4 is a layered superconductor with a Tc ≈ 0.95 K. The electrical resistivity is strongly...
The oxide superconductor Sr2RuO4 is emerging as an archetypal strongly correlated electron system. W...