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Comprehensive review on topological superconducting materials and interfaces
Superconductivity in topological materials has drawn significant interest from the scientific
community as these materials provide a hint of the existence of Majorana fermions …
community as these materials provide a hint of the existence of Majorana fermions …
Orbital Fulde–Ferrell–Larkin–ovchinnikov state in an ising superconductor
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 …
external magnetic field can break the time-reversal symmetry, forming a conventional Fulde …
Evidence of topological boundary modes with topological nodal-point superconductivity
AK Nayak, A Steinbok, Y Roet, J Koo, G Margalit… - Nature physics, 2021 - nature.com
Topological superconductors are an essential component for topologically protected
quantum computation and information processing. Although signatures of topological …
quantum computation and information processing. Although signatures of topological …
Two-fold symmetric superconductivity in few-layer NbSe2
The strong Ising spin–orbit coupling in certain two-dimensional transition metal
dichalcogenides can profoundly affect the superconducting state in few-layer samples. For …
dichalcogenides can profoundly affect the superconducting state in few-layer samples. For …
Ising Superconductivity and Magnetism in
Recent studies on superconductivity in NbSe 2 have demonstrated a large anisotropy in the
superconducting critical field when the material is reduced to a single monolayer. Motivated …
superconducting critical field when the material is reduced to a single monolayer. Motivated …
Ising pairing in atomically thin superconductors
D Zhang, J Falson - Nanotechnology, 2021 - iopscience.iop.org
Ising-type pairing in atomically thin superconducting materials has emerged as a novel
means of generating devices with resilience to a magnetic field applied parallel to the two …
means of generating devices with resilience to a magnetic field applied parallel to the two …
Weak-coupling theory of pair density wave instabilities in transition metal dichalcogenides
The possibility of realizing pair density wave (PDW) phases, in which Cooper pairs have a
finite momentum, presents an interesting challenge that has been studied in a wide variety …
finite momentum, presents an interesting challenge that has been studied in a wide variety …
Theory of Hofstadter superconductors
We study mean-field states resulting from the pairing of electrons in time-reversal broken
fractal Hofstadter bands, which arise in two-dimensional lattices where the unit cell traps …
fractal Hofstadter bands, which arise in two-dimensional lattices where the unit cell traps …
Magic angles and correlations in twisted nodal superconductors
Motivated by recent advances in the fabrication of twisted bilayers of two-dimensional
materials, we consider the low-energy properties of a twisted pair of two-dimensional nodal …
materials, we consider the low-energy properties of a twisted pair of two-dimensional nodal …
Nodal and Nematic Superconducting Phases in Monolayers from Competing Superconducting Channels
Transition metal dichalcogenides like 2 H-NbSe 2 in their two-dimensional (2D) form exhibit
Ising superconductivity with the quasiparticle spins being firmly pinned in the direction …
Ising superconductivity with the quasiparticle spins being firmly pinned in the direction …