DFT+mu: A Step Change in Muon Spectroscopy
Lead Research Organisation:
University of Oxford
Department Name: Oxford Physics
Abstract
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Organisations
Publications
Lang F
(2019)
FeTi 2 O 5 : A spin Jahn-Teller transition enhanced by cation substitution
in Physical Review B
Kirschner F
(2019)
Spin Jahn-Teller antiferromagnetism in CoTi 2 O 5
in Physical Review B
Choi S
(2019)
Spin dynamics and field-induced magnetic phase transition in the honeycomb Kitaev magnet a - Li 2 IrO 3
in Physical Review B
Princep A
(2020)
Magnetically driven loss of centrosymmetry in metallic Pb 2 CoOsO 6
in Physical Review B
Cho H
(2020)
Dynamic spin fluctuations in the frustrated A -site spinel Cu Al 2 O 4
in Physical Review B
Azarevich A
(2021)
Inhomogeneous superconductivity in Lu x Zr 1 - x B 12 dodecaborides with dynamic charge stripes
in Physical Review B
Kirschner F
(2018)
Two-gap superconductivity with line nodes in CsCa 2 Fe 4 As 4 F 2
in Physical Review B
Caruso F
(2018)
Electron-plasmon and electron-phonon satellites in the angle-resolved photoelectron spectra of n -doped anatase TiO 2
in Physical Review B
Kirschner F
(2018)
Proposal for the detection of magnetic monopoles in spin ice via nanoscale magnetometry
in Physical Review B
Khuntia P
(2017)
Local magnetism and spin dynamics of the frustrated honeycomb rhodate Li 2 RhO 3
in Physical Review B
Description | The nature of nodal superconductivity in new superconductors with formulae ACa2Fe4As4F2 has been clarified. New techniques have been developed to perform muon site calculations. A full description of the muon-fluorine interaction has been provided which has given a new window on decoherence. The muon site in pyrochlores has been clarified and explained. The effect of the muon on unconventional superconductors has been understood. |
Exploitation Route | This research is part of the development of advanced materials for technology applications. |
Sectors | Digital/Communication/Information Technologies (including Software),Electronics |
Description | The paper "Information and Decoherence in a Muon-Fluorine Coupled System", J. M. Wilkinson and S. J. Blundell, Phys. Rev. Lett. 125, 087201 (2020) solves a long-standing research problem by demonstrating how to describe the coherent evolution of a fundamental muon-nuclear coupled spin system. This result was well publicised. |
First Year Of Impact | 2021 |
Description | MUCONTROL |
Amount | £2,129,530 (GBP) |
Funding ID | EP/X025861/1 |
Organisation | United Kingdom Research and Innovation |
Sector | Public |
Country | United Kingdom |
Start | 11/2022 |
End | 10/2027 |