We report on the selective fabrication of high-quality Sr2IrO4 and SrIrO3 epitaxial thin films from a single polycrystalline Sr2IrO4 target by pulsed laser deposition. Using a combination of x-ray diffraction and photoemission spectroscopy characterizations, we discover that within a relatively narrow range of substrate temperature, the oxygen partial pressure plays a critical role in the cation stoichiometric ratio of the films, and triggers the stabilization of different Ruddlesden-Popper (RP) phases. Resonant x-ray absorption spectroscopy measurements taken at the Ir L edge and the O K edge demonstrate the presence of strong spin-orbit coupling, and reveal the electronic and orbital structures of both compounds. These results suggest tha...
We elucidated the formation process for Ruddlesden-Popper-type defects during pulsed laser depositio...
We have grown epitaxial (Sr,Ba) (n+1)Ru(n)O(3n+1) films, n = 1, 2, and infinity, by pulsed laser dep...
An often-overlooked property of transition metal oxide thin films is their microscopic surface struc...
We report on the selective fabrication of high-quality Sr2IrO4 and SrIrO3 epitaxial thin films from ...
We demonstrate the selective fabrication of Ruddlesden-Popper (RP) type SrIrO3, Sr3Ir2O7, and Sr2IrO...
The subtle balance of electronic correlations, crystal field splitting, and spin–orbit coupling in l...
The layered iridates such as Sr2IrO4 and Sr3Ir2O7, have attracted substantial attention due to their...
We report that epitaxial Sr2IrO4 thin-films can be selectively grown using pulsed laser deposition (...
In this work, we investigate electronic and magnetic phenomena in thin films and heterostructures of...
Obtaining high-quality thin films of 5d transition metal oxides is essential to explore the exotic s...
© 2020 American Chemical Society. All rights reserved.Ruddlesden-Popper (RP) phases (An+1BnO3n+1, n ...
Obtaining high-quality thin films of 5d transition metal oxides is essential to explore the exotic s...
We investigated the electronic structure of [(SrIrO3)m, (SrTiO3)] (m = 1, 2, and ∞) superlattice (SL...
We have fabricated epitaxial Sr2TiO4 thin films on SrTiO3 (100) single crystal substrates by pulsed ...
We synthesized orthorhombic SrIrO3 thin films on SrTiO3(001) substrates by employing pulsed laser de...
We elucidated the formation process for Ruddlesden-Popper-type defects during pulsed laser depositio...
We have grown epitaxial (Sr,Ba) (n+1)Ru(n)O(3n+1) films, n = 1, 2, and infinity, by pulsed laser dep...
An often-overlooked property of transition metal oxide thin films is their microscopic surface struc...
We report on the selective fabrication of high-quality Sr2IrO4 and SrIrO3 epitaxial thin films from ...
We demonstrate the selective fabrication of Ruddlesden-Popper (RP) type SrIrO3, Sr3Ir2O7, and Sr2IrO...
The subtle balance of electronic correlations, crystal field splitting, and spin–orbit coupling in l...
The layered iridates such as Sr2IrO4 and Sr3Ir2O7, have attracted substantial attention due to their...
We report that epitaxial Sr2IrO4 thin-films can be selectively grown using pulsed laser deposition (...
In this work, we investigate electronic and magnetic phenomena in thin films and heterostructures of...
Obtaining high-quality thin films of 5d transition metal oxides is essential to explore the exotic s...
© 2020 American Chemical Society. All rights reserved.Ruddlesden-Popper (RP) phases (An+1BnO3n+1, n ...
Obtaining high-quality thin films of 5d transition metal oxides is essential to explore the exotic s...
We investigated the electronic structure of [(SrIrO3)m, (SrTiO3)] (m = 1, 2, and ∞) superlattice (SL...
We have fabricated epitaxial Sr2TiO4 thin films on SrTiO3 (100) single crystal substrates by pulsed ...
We synthesized orthorhombic SrIrO3 thin films on SrTiO3(001) substrates by employing pulsed laser de...
We elucidated the formation process for Ruddlesden-Popper-type defects during pulsed laser depositio...
We have grown epitaxial (Sr,Ba) (n+1)Ru(n)O(3n+1) films, n = 1, 2, and infinity, by pulsed laser dep...
An often-overlooked property of transition metal oxide thin films is their microscopic surface struc...