Spatially inhomogeneous electronic states are expected to be key ingredients for the emergence of superconducting phases in quantum materials hosting charge-density waves (CDWs). Prototypical materials are transitionmetal dichalcogenides (TMDCs) and among them, 1T-TiSe2 exhibiting intertwined CDW and superconducting states under Cu intercalation, pressure, or electrical gating. Although it has been recently proposed that the emergence of superconductivity relates to CDW fluctuations and the development of spatial inhomogeneities in the CDW order, the fundamental mechanism underlying such a phase separation (PS) is still missing. Using angle- resolved photoemission spectroscopy and variable-temperature scanning tunneling microscopy,...
We report a detailed study of the microscopic effects of Cu intercalation on the charge density wave...
The competition between proximate electronic phases produces a complex phenomenology in strongly cor...
The transition metal dichalcogenide 1T−TiSe2-two-dimensional layered material undergoing a commensu...
The impact of variable Ti self-doping on the 1T−TiSe2 charge density wave (CDW) is studied by scanni...
The impact of variable Ti self-doping on the 1T−TiSe2 charge density wave (CDW) is studied by scann...
A superconducting state (T_c∼4.2 K) has very recently been observed upon successful doping of the c...
In Ti-intercalated self-doped 1T−TiSe2 crystals, the charge density wave (CDW) superstructure induc...
In Ti-intercalated self-doped 1T-TiSe2 crystals, the charge density wave (CDW) superstructure induce...
The relationship between charge-density waves (CDWs) and superconductivity is a long-standing debate...
We report an infrared study on 1T-TiSe_2, the parent compound of the newly discovered superconductor...
We present a detailed low-temperature scanning tunneling microscopy (STM) study of the commensurate ...
By means of high-resolution angle-resolved photoelectron spectroscopy (ARPES), we have studied the f...
We present a detailed low-temperature scanning tunneling microscopy (STM) study of the commensurate ...
When a Mott metal-insulator transition is inhibited by a small amount of disorder in the layered dic...
Charge density wave (CDW) formation, a key physics issue for materials, arises from interactions amo...
We report a detailed study of the microscopic effects of Cu intercalation on the charge density wave...
The competition between proximate electronic phases produces a complex phenomenology in strongly cor...
The transition metal dichalcogenide 1T−TiSe2-two-dimensional layered material undergoing a commensu...
The impact of variable Ti self-doping on the 1T−TiSe2 charge density wave (CDW) is studied by scanni...
The impact of variable Ti self-doping on the 1T−TiSe2 charge density wave (CDW) is studied by scann...
A superconducting state (T_c∼4.2 K) has very recently been observed upon successful doping of the c...
In Ti-intercalated self-doped 1T−TiSe2 crystals, the charge density wave (CDW) superstructure induc...
In Ti-intercalated self-doped 1T-TiSe2 crystals, the charge density wave (CDW) superstructure induce...
The relationship between charge-density waves (CDWs) and superconductivity is a long-standing debate...
We report an infrared study on 1T-TiSe_2, the parent compound of the newly discovered superconductor...
We present a detailed low-temperature scanning tunneling microscopy (STM) study of the commensurate ...
By means of high-resolution angle-resolved photoelectron spectroscopy (ARPES), we have studied the f...
We present a detailed low-temperature scanning tunneling microscopy (STM) study of the commensurate ...
When a Mott metal-insulator transition is inhibited by a small amount of disorder in the layered dic...
Charge density wave (CDW) formation, a key physics issue for materials, arises from interactions amo...
We report a detailed study of the microscopic effects of Cu intercalation on the charge density wave...
The competition between proximate electronic phases produces a complex phenomenology in strongly cor...
The transition metal dichalcogenide 1T−TiSe2-two-dimensional layered material undergoing a commensu...