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From the 1 of 8 linked papers with an AI index.

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8 papers

cond-mat.str-el2026

Disentangling bulk and surface states in the electronic structure of PtBi(0001)

Stefanie Suzanne Brinkman, Xin Liang Tan, Anders Christian Mathisen +13

The paper studies the electronic structure of PtBi2 (0001) surfaces, using ARPES and calculations to separate bulk bands from surface states on two surface terminations.

cond-mat.supr-con2026

Fermiology and spin polarization of topological surface states in PtBi

Anders Christian Mathisen, Xin Liang Tan, Stefanie Suzanne Brinkman +12

Layered PtBi is a candidate for topological superconductivity arising in Fermi-arc surface states. Using spin- and angle-resolved photoemission spectroscopy, we demonstrate tha…

cond-mat.supr-con2026

Point-contact enhanced superconductivity in trigonal PtBi2: quest for the origin of high-Tc

O. E. Kvitnitskaya, L. Harnagea, G. Shipunov +6

We studied enhanced superconductivity in point contacts (PCs) based on a type-I Weyl semimetal trigonal t-PtBi2 using both normal metal (Ag, Cu, Pt) and ferromagnetic (Fe, Co, Ni)…

cond-mat.mes-hall2025

Room temperature Planar Hall effect in nanostructures of trigonal-PtBi2

Arthur Veyrat, Klaus Koepernik, Louis Veyrat +13

Trigonal-PtBi2 has recently garnered significant interest as it exhibits unique superconducting topological surface states due to electron pairing on Fermi arcs connecting bulk Wey…

cond-mat.supr-con2025

Temperature dependence of surface superconductivity in t-PtBi

Julia Besproswanny, Sebastian Schimmel, Yanina Fasano +5

The Weyl semimetal trigonal PtBi has recently been identified as a promising candidate material for intrinsic topological surface superconductivity emerging from the Fermi arc…

cond-mat.supr-con2025

Topological nodal -wave superconductivity in PtBi

Susmita Changdar, Oleksandr Suvorov, Andrii Kuibarov +11

Most superconducting materials are well-understood and conventional in the sense that the pairs of electrons that cause the superconductivity by their condensation have the highest…