Two-electron photoemission spectroscopy in Topological Superconductors
arXiv:2210.11738
Abstract
We demonstrate that the photo-electron counting rate, , measured in two electron coincidence spectroscopy (2-ARPES) experiments, provides unprecedented insight into the nature of topological superconductivity. In particular, we show that the spin dependence of allows one to detect superconducting spin-triplet correlations that are induced in a topological superconductor even in the absence of an associated triplet superconducting order parameter. This ability to detect spin-triplet correlations allows one to distinguish between two recently proposed scenarios for the microscopic origin of topological superconductivity in FeSeTe. Finally, we show that exhibits a characteristic intensity maximum that can be employed to detect topological phase transitions.