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Clarendon Laboratory and Beecroft Building

Andrew Boothroyd

Interim Head of Department

Research theme

  • Quantum materials

Sub department

  • Condensed Matter Physics

Research groups

  • X-ray and neutron scattering
Andrew.Boothroyd@physics.ox.ac.uk
Telephone: 01865 (2)72376
Clarendon Laboratory, room 172,175,377
ORCID ID 0000-0002-3575-7471
ResearcherID AAA-7883-2021
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Textbook

Principles of Neutron Scattering from Condensed Matter
Principles of Neutron Scattering from Condensed Matter

Published by Oxford University Press in July 2020

Buy now

Strong $(\pi,0)$ spin fluctuations in $\beta$-FeSe observed by neutron spectroscopy

(2015)

Authors:

MC Rahn, RA Ewings, SJ Sedlmaier, SJ Clarke, AT Boothroyd
More details from the publisher
Details from ArXiV

Crystal field states of Tb3+ in the pyrochlore spin liquid Tb2Ti2O7 from neutron spectroscopy

(2015)

Authors:

AJ Princep, HC Walker, DT Adroja, D Prabhakaran, AT Boothroyd
More details from the publisher
Details from ArXiV

Magnetic excitation spectrum of LuFe2O4 measured with inelastic neutron scattering

Physical Review B American Physical Society (APS) 91:3 (2015) 035103

Authors:

SM Gaw, HJ Lewtas, DF McMorrow, J Kulda, RA Ewings, TG Perring, RA McKinnon, G Balakrishnan, D Prabhakaran, AT Boothroyd
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Raw data for Pb2CoOsO6

University of Oxford (2015)

Authors:

Andrew Boothroyd, Andrew Princep, Masahiro Nagao, Yoshitaka Matsushita, Kazunari Yamaura, Hai L Feng, Yanfeng Guo, Hongming Weng, Pascal Manuel, Dmitry Khalyavin, Anatoliy Senyshyn, Marein Rahn, Yahua Yuan

Abstract:

The data are from an investigation carried out between 2013 and 2015 on a newly synthesized compound Pb2CoOsO6. The archive contains raw data from experimental measurements and electronic structure calculations. The data are provided in text files combined into a zip archive.
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Anisotropic local modification of crystal field levels in Pr-based pyrochlores: a muon-induced effect modeled using density functional theory.

Physical review letters 114:1 (2015) 017602

Authors:

FR Foronda, F Lang, JS Möller, T Lancaster, AT Boothroyd, FL Pratt, SR Giblin, D Prabhakaran, SJ Blundell

Abstract:

Although muon spin relaxation is commonly used to probe local magnetic order, spin freezing, and spin dynamics, we identify an experimental situation in which the measured response is dominated by an effect resulting from the muon-induced local distortion rather than the intrinsic behavior of the host compound. We demonstrate this effect in some quantum spin ice candidate materials Pr(2)B(2)O(7) (B=Sn, Zr, Hf), where we detect a static distribution of magnetic moments that appears to grow on cooling. Using density functional theory we show how this effect can be explained via a hyperfine enhancement arising from a splitting of the non-Kramers doublet ground states on Pr ions close to the muon, which itself causes a highly anisotropic distortion field. We provide a quantitative relationship between this effect and the measured temperature dependence of the muon relaxation and discuss the relevance of these observations to muon experiments in other magnetic materials.
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