We use angle-resolved photoemission spectroscopy to show that the near-surface electronic structure of a bulk insulating iridate Sr3Ir2O7 lying near a metal-Mott insulator transition exhibits weak metallicity signified by finite electronic spectral weight at the Fermi level. The surface electrons exhibit a spin structure resulting from an interplay of spin-orbit, Coulomb interaction and surface quantum magnetism. Our results shed light on understanding the exotic quantum entanglement and transport phenomena in iridate-based oxide devices
The delicate interplay of electronic charge, spin, and orbital degrees of freedom is in the heart of...
In the context of correlated insulators, where electron–electron interactions (U) drive the localiza...
Analogs of the high-T-c cuprates have been long sought after in transition metal oxides. Because of ...
Interest in many strongly spin-orbit-coupled 5d-transition metal oxide insulators stems from mapping...
Interest has been rising in systems, such as the iridates, where both spin-orbit coupling and Coulom...
Using high-resolution angle-resolved photoemission spectroscopy and ab initio calculation, we have s...
Using high-resolution angle-resolved photoemission spectroscopy and ab initio calculation, we have s...
The perovskite iridates Sr2IrO4 and Sr3Ir2O7 represent novel systems for exploring the electronic st...
In the context of correlated insulators, where electron-electron interactions (U) drive the localiza...
The perovskite iridates Sr2IrO4 and Sr3Ir2O7 represent novel systems for exploring the electronic st...
Using high-resolution angle-resolved photoemission spectroscopy and ab initio calculation, we have s...
International audienceOne way to induce insulator-to-metal transitions in the spin-orbit Mott insula...
International audienceOne way to induce insulator-to-metal transitions in the spin-orbit Mott insula...
The delicate interplay of electronic charge, spin, and orbital degrees of freedom is in the heart of...
The delicate interplay of electronic charge, spin, and orbital degrees of freedom is in the heart of...
The delicate interplay of electronic charge, spin, and orbital degrees of freedom is in the heart of...
In the context of correlated insulators, where electron–electron interactions (U) drive the localiza...
Analogs of the high-T-c cuprates have been long sought after in transition metal oxides. Because of ...
Interest in many strongly spin-orbit-coupled 5d-transition metal oxide insulators stems from mapping...
Interest has been rising in systems, such as the iridates, where both spin-orbit coupling and Coulom...
Using high-resolution angle-resolved photoemission spectroscopy and ab initio calculation, we have s...
Using high-resolution angle-resolved photoemission spectroscopy and ab initio calculation, we have s...
The perovskite iridates Sr2IrO4 and Sr3Ir2O7 represent novel systems for exploring the electronic st...
In the context of correlated insulators, where electron-electron interactions (U) drive the localiza...
The perovskite iridates Sr2IrO4 and Sr3Ir2O7 represent novel systems for exploring the electronic st...
Using high-resolution angle-resolved photoemission spectroscopy and ab initio calculation, we have s...
International audienceOne way to induce insulator-to-metal transitions in the spin-orbit Mott insula...
International audienceOne way to induce insulator-to-metal transitions in the spin-orbit Mott insula...
The delicate interplay of electronic charge, spin, and orbital degrees of freedom is in the heart of...
The delicate interplay of electronic charge, spin, and orbital degrees of freedom is in the heart of...
The delicate interplay of electronic charge, spin, and orbital degrees of freedom is in the heart of...
In the context of correlated insulators, where electron–electron interactions (U) drive the localiza...
Analogs of the high-T-c cuprates have been long sought after in transition metal oxides. Because of ...