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| Title | Published in | Access level | OA Policy | Year | Views | Downloads | |
|---|---|---|---|---|---|---|---|
| Fermi surface and pseudogap in highly doped Sr2IrO4 | npj quantum materials | 2024 | 108 | 68 | |||
| A laser-ARPES study of LaNiO3 thin films grown by sputter deposition | APL Materials | 2020 | 681 | 180 | |||
| High-Resolution Photoemission on Sr2RuO4 Reveals Correlation-Enhanced Effective Spin-Orbit Coupling and Dominantly Local Self-Energies | Physical Review X | 2019 | 787 | 384 | |||
| Mapping spin–charge conversion to the band structure in a topological oxide two-dimensional electron gas | Nature Materials | 2019 | 872 | 4 | |||
| Band Structure and Spin–Orbital Texture of the (111)‐KTaO3 2D Electron Gas | Advanced Electronic Materials | 2019 | 818 | 1 | |||
| ARPES Studies of Two-Dimensional Electron Gases at Transition Metal Oxide Surfaces | Spectroscopy of Complex Oxide Interfaces | 2018 | 263 | 169 | |||
| Microfocus Laser–Angle-Resolved Photoemission on Encapsulated Mono-, Bi-, and Few-Layer 1T′-WTe2 | Nano Letters | 2018 | 1,169 | 630 | |||
| In situ strain tuning of the metal-insulator-transition of Ca2RuO4 in angle-resolved photoemission experiments | Nature Communications | 2018 | 864 | 275 | |||
| Observation of Out-of-Plane Spin Texture in a SrTiO3(111) Two-Dimensional Electron Gas | Physical Review Letters | 2018 | 867 | 281 | |||
| Electronic structure of buried LaNiO3 layers in (111)-oriented LaNiO3/LaMnO3 superlattices probed by soft x-ray ARPES | APL Materials | 2017 | 1,056 | 226 | |||
| Atomically Precise Lateral Modulation of a Two-Dimensional Electron Liquid in Anatase TiO2 Thin Films | Nano Letters | 2017 | 818 | 379 | |||
| Observation of large topologically trivial Fermi arcs in the candidate type-II Weyl semimetal WTe2 | Physical review. B, Condensed matter and materials physics | 2016 | 877 | 581 | |||
| Fermi Arcs and Their Topological Character in the Candidate Type-II Weyl Semimetal MoTe2 | Physical review. X | 2016 | 1,000 | 248 | |||
| Absence of giant spin splitting in the two-dimensional electron liquid at the surface of SrTiO3(001) | Physical review. B, Condensed matter and materials physics | 2016 | 742 | 290 | |||
| Tailoring the nature and strength of electron–phonon interactions in the SrTiO3(001) 2D electron liquid | Nature materials | 2016 | 939 | 605 | |||
| Collapse of the Mott Gap and Emergence of a Nodal Liquid in Lightly Doped Sr2IrO4 | Physical review letters | 2015 | 776 | 1,149 | |||
| Carrier-Density Control of the SrTiO3 (001) Surface 2D Electron Gas studied by ARPES | Advanced materials | 2015 | 858 | 721 | |||
| Control of a Two-Dimensional Electron Gas on SrTiO3(111) by Atomic Oxygen | Physical review letters | 2014 | 755 | 1,092 |
