High- Tc cuprates, iron pnictides, organic BEDT and TMTSF, alkali-doped C60, and heavy-fermion systems have superconducting states adjacent to competing states exhibiting static antiferromagnetic or spin density wave order. This feature has promoted pictures for their superconducting pairing mediated by spin fluctuations. Sr2RuO4 is another unconventional superconductor which almost certainly has a p-wave pairing. The absence of known signatures of static magnetism in the Sr-rich side of the (Ca, Sr) substitution space, however, has led to a prevailing view that the superconducting state in Sr2RuO4 emerges from a surrounding Fermi-liquid metallic state. Using muon spin relaxation and magnetic susceptibility measurements, we demonstrate here...
Materials with strongly correlated electrons often exhibit interesting physical properties. An examp...
This work has been financially supported by the Deutsche Forschungsgemeinschaft (GR 4667/1, GRK 1621...
We show that in Sr2RuO4 the Fermi surface geometry as inferred from angle resolved photoemission exp...
We review the normal and superconducting state properties of the unconventional triplet superconduct...
Phases of matter are usually identified through spontaneous symmetry breaking, especially regarding ...
Using a Hubbard Hamiltonian for the three electronic bands crossing the Fermi level in Sr2RuO4, we c...
This review presents a summary and evaluation of the experimental properties of unconventional super...
Abstract: Materials with strongly correlated electrons often exhibit interesting physical properties...
Phases of matter are usually identified through spontaneous symmetry breaking, especially regarding ...
Sr2RuO4 is a layered superconductor with a Tc ≈ 0.95 K. The electrical resistivity is strongly...
Sr2RuO4 is the cleanest and most well-characterized example of unconventional superconductivity know...
Materials with strongly correlated electrons often exhibit interesting physical properties. An examp...
Materials with strongly correlated electrons often exhibit interesting physical properties. An examp...
Strontium ruthenate (Sr2RuO4) continues to present an important test of our understanding of unconve...
This review presents a summary and evaluation of the experimental properties of unconventional super...
Materials with strongly correlated electrons often exhibit interesting physical properties. An examp...
This work has been financially supported by the Deutsche Forschungsgemeinschaft (GR 4667/1, GRK 1621...
We show that in Sr2RuO4 the Fermi surface geometry as inferred from angle resolved photoemission exp...
We review the normal and superconducting state properties of the unconventional triplet superconduct...
Phases of matter are usually identified through spontaneous symmetry breaking, especially regarding ...
Using a Hubbard Hamiltonian for the three electronic bands crossing the Fermi level in Sr2RuO4, we c...
This review presents a summary and evaluation of the experimental properties of unconventional super...
Abstract: Materials with strongly correlated electrons often exhibit interesting physical properties...
Phases of matter are usually identified through spontaneous symmetry breaking, especially regarding ...
Sr2RuO4 is a layered superconductor with a Tc ≈ 0.95 K. The electrical resistivity is strongly...
Sr2RuO4 is the cleanest and most well-characterized example of unconventional superconductivity know...
Materials with strongly correlated electrons often exhibit interesting physical properties. An examp...
Materials with strongly correlated electrons often exhibit interesting physical properties. An examp...
Strontium ruthenate (Sr2RuO4) continues to present an important test of our understanding of unconve...
This review presents a summary and evaluation of the experimental properties of unconventional super...
Materials with strongly correlated electrons often exhibit interesting physical properties. An examp...
This work has been financially supported by the Deutsche Forschungsgemeinschaft (GR 4667/1, GRK 1621...
We show that in Sr2RuO4 the Fermi surface geometry as inferred from angle resolved photoemission exp...