The electrical control of a material's conductivity is at the heart of modern electronics. Conventionally, this control is achieved by tuning the density of mobile charge carriers. A completely different approach is possible in Mott insulators such as Ca2RuO4, where an insulator-to-metal transition (IMT) can be induced by a weak electric field or current. While the driving force of the IMT is poorly understood, it has been thought to be a breakdown of the Mott state. Using in operando angle-resolved photoemission spectroscopy, we show that this is not the case: The current-induced conductivity is caused by the formation of in-gap states with only a minor reorganization of the Mott state. Electronic structure calculations show that these in-...
A paradigmatic case of multi-band Mott physics including spin-orbit and Hund's coupling is realized ...
A paradigmatic case of multi-band Mott physics including spin-orbit and Hund's coupling is realized ...
The electric-current stabilized semimetallic state in the quasi-two-dimensional Mott insulator Ca2Ru...
The electrical control of a material's conductivity is at the heart of modern electronics. Conventio...
The Mott insulator Ca2RuO4 is the subject of much recent attention following reports of emergent non...
Abstract The surprisingly low current density required for inducing the insulator to metal transitio...
The Mott insulator Ca_{2}RuO_{4} is the subject of much recent attention following reports of emerge...
A comprehensive study of the behavior of the Mott insulator Ca2RuO4 under electrical current drive i...
A paradigmatic case of multi-band Mott physics including spin-orbit and Hund's coupling is realized ...
Doped Mott insulators are the starting point for interesting physics such as high temperature superc...
A paradigmatic case of multi-band Mott physics including spin-orbit and Hund's coupling is realized ...
A paradigmatic case of multi-band Mott physics including spin-orbit and Hund's coupling is realized ...
The electric-current stabilized semimetallic state in the quasi-two-dimensional Mott insulator Ca2Ru...
The electrical control of a material's conductivity is at the heart of modern electronics. Conventio...
The Mott insulator Ca2RuO4 is the subject of much recent attention following reports of emergent non...
Abstract The surprisingly low current density required for inducing the insulator to metal transitio...
The Mott insulator Ca_{2}RuO_{4} is the subject of much recent attention following reports of emerge...
A comprehensive study of the behavior of the Mott insulator Ca2RuO4 under electrical current drive i...
A paradigmatic case of multi-band Mott physics including spin-orbit and Hund's coupling is realized ...
Doped Mott insulators are the starting point for interesting physics such as high temperature superc...
A paradigmatic case of multi-band Mott physics including spin-orbit and Hund's coupling is realized ...
A paradigmatic case of multi-band Mott physics including spin-orbit and Hund's coupling is realized ...
The electric-current stabilized semimetallic state in the quasi-two-dimensional Mott insulator Ca2Ru...