The interplay between spin-orbit coupling and structural inversion symmetry breaking in solids has generated much interest due to the nontrivial spin and magnetic textures which can result. Such studies are typically focused on systems where large atomic number elements lead to strong spin-orbit coupling, in turn rendering electronic correlations weak. In contrast, here we investigate the temperature-dependent electronic structure of Ca3Ru2O7, a 4d oxide metal for which both correlations and spin-orbit coupling are pronounced and in which octahedral tilts and rotations combine to mediate both global and local inversion symmetry-breaking polar distortions. Our angle-resolved photoemission measurements reveal the destruction of a large hole-l...
Transition metal oxides (TMOs) exhibit a large variety of magnetic, electronic, and structural phase...
Electronic nematicity has been found in a wide range of strongly correlated electron materials, resu...
High-resolution angular resolved photoemission data reveal well-defined quasiparticle bands of unusu...
The interplay between spin-orbit coupling and structural inversion symmetry breaking in solids has g...
The interplay between spin–orbit coupling and structural inversion symmetry breaking in solids has g...
O 1s x-ray absorption study of the Mott insulator Ca2RuO4 shows that the orbital population of the 4...
O 1s x-ray absorption study of the Mott insulator Ca2RuO4 shows that the orbital population of the 4...
Electronic band structures in solids stem from a periodic potential reflecting the structure of eith...
The antiferromagnetic Ruddlesden-Popper ruthenate Ca3Ru2O7 is a model polar metal, combining inversi...
Abstract Electronic band structures in solids stem from a periodic potential reflecting the structur...
Two-dimensional semimetals have been the center of intensified investigations since the realization ...
We use Ru L-3-edge resonant inelastic x-ray scattering to study the full range of excitations in Ca3...
The coupling of spin and orbital degrees of freedom in the trilayer Sr4Ru3O10 sets a long-standing p...
The Sr1−xCax3Ru2O7 solid solution series exhibits complex magnetic ground states, ranging from an it...
We show how complex modulated order can spontaneously emerge when magnetic interactions compete in a...
Transition metal oxides (TMOs) exhibit a large variety of magnetic, electronic, and structural phase...
Electronic nematicity has been found in a wide range of strongly correlated electron materials, resu...
High-resolution angular resolved photoemission data reveal well-defined quasiparticle bands of unusu...
The interplay between spin-orbit coupling and structural inversion symmetry breaking in solids has g...
The interplay between spin–orbit coupling and structural inversion symmetry breaking in solids has g...
O 1s x-ray absorption study of the Mott insulator Ca2RuO4 shows that the orbital population of the 4...
O 1s x-ray absorption study of the Mott insulator Ca2RuO4 shows that the orbital population of the 4...
Electronic band structures in solids stem from a periodic potential reflecting the structure of eith...
The antiferromagnetic Ruddlesden-Popper ruthenate Ca3Ru2O7 is a model polar metal, combining inversi...
Abstract Electronic band structures in solids stem from a periodic potential reflecting the structur...
Two-dimensional semimetals have been the center of intensified investigations since the realization ...
We use Ru L-3-edge resonant inelastic x-ray scattering to study the full range of excitations in Ca3...
The coupling of spin and orbital degrees of freedom in the trilayer Sr4Ru3O10 sets a long-standing p...
The Sr1−xCax3Ru2O7 solid solution series exhibits complex magnetic ground states, ranging from an it...
We show how complex modulated order can spontaneously emerge when magnetic interactions compete in a...
Transition metal oxides (TMOs) exhibit a large variety of magnetic, electronic, and structural phase...
Electronic nematicity has been found in a wide range of strongly correlated electron materials, resu...
High-resolution angular resolved photoemission data reveal well-defined quasiparticle bands of unusu...