Sr2RuO4 (SRO214) is a prototypical unconventional superconductor. However, since the discovery of its superconductivity a quarter of a century ago, the symmetry of the bulk and surface superconducting states in single crystal SRO214 remains controversial. Solving this problem is massively impeded by the fact that superconducting SRO214 is extremely challenging to achieve in thin-films as structural defects and impurities sensitively annihilate superconductivity. Here we report a protocol for the reliable growth of superconducting SRO214 thin-films by pulsed laser deposition and identify universal materials properties that are destructive to the superconducting state. We demonstrate that careful control of the starting material is essential ...
In this thesis, the growth of c-axis oriented Sr2RuO4 thin films using pulsed laser deposition and t...
Ferromagnetic SrRuO3 thin films are deposited on the ab surface of single crystals of the spin-tripl...
The atomic structure of the film–substrate interface of a (001) Sr2RuO4/(100)c LaAlO3Sr2RuO4/(100)cL...
Sr2RuO4 (SRO214) is a prototypical unconventional superconductor. However, since the discovery of it...
Sr2RuO4 is a prototypical unconventional superconductor, but the superconducting symmetries of the b...
Sr2RuO4 is a prototypical unconventional superconductor, but the superconducting symmetries of the b...
Sr2RuO4 (SRO214) is a prototypical unconventional superconductor. However, since the discovery of su...
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition...
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition...
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition...
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition....
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition....
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition....
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition....
© 2020 American Chemical Society. All rights reserved.Ruddlesden-Popper (RP) phases (An+1BnO3n+1, n ...
In this thesis, the growth of c-axis oriented Sr2RuO4 thin films using pulsed laser deposition and t...
Ferromagnetic SrRuO3 thin films are deposited on the ab surface of single crystals of the spin-tripl...
The atomic structure of the film–substrate interface of a (001) Sr2RuO4/(100)c LaAlO3Sr2RuO4/(100)cL...
Sr2RuO4 (SRO214) is a prototypical unconventional superconductor. However, since the discovery of it...
Sr2RuO4 is a prototypical unconventional superconductor, but the superconducting symmetries of the b...
Sr2RuO4 is a prototypical unconventional superconductor, but the superconducting symmetries of the b...
Sr2RuO4 (SRO214) is a prototypical unconventional superconductor. However, since the discovery of su...
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition...
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition...
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition...
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition....
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition....
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition....
Superconducting c-axis-oriented Sr2RuO4 thin film has been fabricated using pulsed laser deposition....
© 2020 American Chemical Society. All rights reserved.Ruddlesden-Popper (RP) phases (An+1BnO3n+1, n ...
In this thesis, the growth of c-axis oriented Sr2RuO4 thin films using pulsed laser deposition and t...
Ferromagnetic SrRuO3 thin films are deposited on the ab surface of single crystals of the spin-tripl...
The atomic structure of the film–substrate interface of a (001) Sr2RuO4/(100)c LaAlO3Sr2RuO4/(100)cL...