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CMP
Credit: Jack Hobhouse

Dr Dharmalingam Prabhakaran

Researcher

Research theme

  • Quantum materials

Sub department

  • Condensed Matter Physics

Research groups

  • Synthesis and crystal growth
dharmalingam.prabhakaran@physics.ox.ac.uk
Telephone: 01865 (2)72270,01865 (2)72351,01865 (2)72341
Clarendon Laboratory, room 175,375,374B,374A,371A,371,177,115,373 (office)
  • About
  • Publications

Layer-by-layer epitaxial thin films of the pyrochlore Tb2Ti2O7.

Nanotechnology 28:5 (2016) 055708-055708

Authors:

L Bovo, CM Rouleau, D Prabhakaran, ST Bramwell

Abstract:

Layer-by-layer epitaxial growth of the pyrochlore magnet Tb2Ti2O7 on the isostructural substrate Y2Ti2O7 results in high-quality single crystal films of up to 60 nm thickness. Substrate-induced strain is shown to act as a strong and controlled perturbation to the exotic magnetism of Tb2Ti2O7, opening up the general prospect of strain-engineering the diverse magnetic and electrical properties of pyrochlore oxides.
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Hall effect in charged conducting ferroelectric domain walls

Nature Communications Springer Nature 7:1 (2016) 13764

Authors:

MP Campbell, JPV McConville, RGP McQuaid, D Prabhakaran, A Kumar, JM Gregg
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Polarization memory in the nonpolar magnetic ground state of multiferroic CuFeO2

PHYSICAL REVIEW B 94:14 (2016) ARTN 144411

Authors:

J Beilsten-Edmands, SJ Magorrian, FR Foronda, D Prabhakaran, PG Radaelli, RD Johnson
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Intermediate magnetization state and competing orders in Dy2Ti2O7 and Ho2Ti2O7

Nature communications Nature (2016)

Authors:

RA Borzi, FA Gómez Albarracín, Dharmalingam Prabhakaran, AP Mackenzie, SA Grigera, DC Cabra, HD Rosales, GL Rossini, A Steppke

Abstract:

Among the frustrated magnetic materials, spin-ice stands out as a particularly interesting system. Residual entropy, freezing and glassiness, Kasteleyn transitions and fractionalization of excitations in three dimensions all stem from a simple classical Hamiltonian. But is the usual spin-ice Hamiltonian a correct description of the experimental systems? Here we address this issue by measuring magnetic susceptibility in the two most studied spin-ice compounds, Dy2Ti2O7 and Ho2Ti2O7, using a vector magnet. Using these results, and guided by a theoretical analysis of possible distortions to the pyrochlore lattice, we construct an effective Hamiltonian and explore it using Monte Carlo simulations. We show how this Hamiltonian reproduces the experimental results, including the formation of a phase of intermediate polarization, and gives important information about the possible ground state of real spin-ice systems. Our work suggests an unusual situation in which distortions might contribute to the preservation rather than relief of the effects of frustration.
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Unconventional magnetism on a honeycomb lattice in alpha-RuCl3 studied by muon spin rotation

PHYSICAL REVIEW B 94:2 (2016) ARTN 020407

Authors:

F Lang, PJ Baker, AA Haghighirad, Y Li, D Prabhakaran, R Valenti, SJ Blundell
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