activity
20242026
collaborators

12 papers

cond-mat.str-el2026

Engineering correlated phases through manipulation of Van Hove singularities

Thomas P. Sheerin, Maria Ramirez, Chris A. Hooley +1

Controlling the ordered phases of correlated electron systems remains a central challenge in quantum materials design. Divergences in the electronic density of states, known as Van…

cond-mat.str-el2026

Quasiparticle interference as a tool to study quantum materials

Luke C. Rhodes, Yuhki Kohsaka, Tetsuo Hanaguri +2

To understand the properties of quantum materials a detailed knowledge of the material's low energy electronic structure is key. Details of the electronic structure drive the groun…

cond-mat.str-el2026

How to measure loop currents in scanning tunneling microscopy

Victoire Morisseau, Luke C. Rhodes, Peter Wahl +1

The emergence of loop current phases, where spontaneous loops of orbital currents give rise to a weak local magnetic moments, has been proposed to exist in a number of quantum mate…

cond-mat.str-el2026

Imaging stripe dynamics in trilayer nickelate LaNiO

Uladzislau Mikhailau, Luke Rhodes, Siri A. Berge +5

Since the discovery of high-temperature superconductivity in nickelate superconductors, it is an open question how closely the superconducting state resembles that of cuprate super…

cond-mat.str-el2026

Revealing Hund superdispersion with tunneling spectroscopy

Luke C. Rhodes, Fabian B. Kugler, Olivier Gingras +5

In cuprate superconductors, electron-electron repulsion results in characteristic spectroscopic features known as `waterfalls', where the sharp quasiparticle dispersion transitions…

cond-mat.supr-con2025

Determining the superconducting order parameter of UPt using scanning tunneling microscopy

Rebecca Bisset, Luke C. Rhodes, Hugo Decitre +5

Superconductivity, a state in which electrical currents can flow without resistance, occurs because of pairing of electrons into quasiparticles with integer spin . In practicall…