In superconductors possessing both time and inversion symmetries, the Zeeman effect of an external magnetic field can break the time-reversal symmetry, forming a conventional Fulde–Ferrell–Larkin–Ovchinnikov (FFLO) state characterized by Cooper pairings with finite momentum1,2. In superconductors lacking (local) inversion symmetry, the Zeeman effect may still act as the underlying mechanism of FFLO states by interacting with spin–orbit coupling (SOC). Specifically, the interplay between the Zeeman effect and Rashba SOC can lead to the formation of more accessible Rashba FFLO states that cover broader regions in the phase diagram3–5. However, when the Zeeman effect is suppressed because of spin locking in the presence of Ising-type SOC, the ...
Superconductivity as a macroscopic quantum state has been intensively studied since its discovery in...
We study superconductivity in spin-orbit-coupled systems in the vicinity of inversion symmetry break...
Metallic transition-metal dichalcogenides (TMDCs) are benchmark systems for studying and controlling...
In superconductors possessing both time and inversion symmetries, the Zeeman effect of an external m...
The conventional Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state relies on the Zeeman effect of an ext...
In this work, we study superconducting moir\'e homobilayer transition metal dichalcogenides where th...
The strong Ising spin-orbit coupling in certain two-dimensional transition metal dichalcogenides can...
Using the quasiclassical formalism, we determine the low-temperature phase diagram of a quasi-one-di...
Superconductivity is a low-temperature quantum state of matter, marked by the vanishing of electrica...
In two-dimensional (2D) NbSe2 crystal, which lacks inversion symmetry, strong spin-orbit coupling al...
We compare the upper critical field of bulk single-crystalline samples of the two intrinsic transiti...
We develop an understanding of the anomalous metal state of the parent compounds of recently discove...
We investigate the influence of Landau quantization on the superconducting instability for a pure la...
Superconductivity in monolayer transition metal dichalcogenides is characterized by !sing-type pairi...
Metallic transition-metal dichalcogenides (TMDCs) are benchmark systems for studying and controlling...
Superconductivity as a macroscopic quantum state has been intensively studied since its discovery in...
We study superconductivity in spin-orbit-coupled systems in the vicinity of inversion symmetry break...
Metallic transition-metal dichalcogenides (TMDCs) are benchmark systems for studying and controlling...
In superconductors possessing both time and inversion symmetries, the Zeeman effect of an external m...
The conventional Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state relies on the Zeeman effect of an ext...
In this work, we study superconducting moir\'e homobilayer transition metal dichalcogenides where th...
The strong Ising spin-orbit coupling in certain two-dimensional transition metal dichalcogenides can...
Using the quasiclassical formalism, we determine the low-temperature phase diagram of a quasi-one-di...
Superconductivity is a low-temperature quantum state of matter, marked by the vanishing of electrica...
In two-dimensional (2D) NbSe2 crystal, which lacks inversion symmetry, strong spin-orbit coupling al...
We compare the upper critical field of bulk single-crystalline samples of the two intrinsic transiti...
We develop an understanding of the anomalous metal state of the parent compounds of recently discove...
We investigate the influence of Landau quantization on the superconducting instability for a pure la...
Superconductivity in monolayer transition metal dichalcogenides is characterized by !sing-type pairi...
Metallic transition-metal dichalcogenides (TMDCs) are benchmark systems for studying and controlling...
Superconductivity as a macroscopic quantum state has been intensively studied since its discovery in...
We study superconductivity in spin-orbit-coupled systems in the vicinity of inversion symmetry break...
Metallic transition-metal dichalcogenides (TMDCs) are benchmark systems for studying and controlling...