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Related papers: Crystal-field interaction and oxygen stoichiometry…

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We report inelastic neutron scattering measurements of crystal field transitions in PrFeAsO, PrFeAsO0.87F0.13, and NdFeAsO0.85F0.15. Doping with fluorine produces additional crystal field excitations, providing evidence that there are two…

In this work we present inelastic neutron scattering experiments which probe the single ion ground states of the rare earth pyrochlores $R_2$Ti$_2$O$_7$ ($R$ = Tb, Dy, Ho). Dy$_2$Ti$_2$O$_7$ and Ho$_2$Ti$_2$O$_7$ are dipolar spin ices, now…

Materials Science · Physics 2016-07-26 M Ruminy , E Pomjakushina , K Iida , K Kamazawa , D T Adroja , U Stuhr , T Fennell

Rare-earth (RE) based compounds and alloys are of great interest both for their fundamental physical properties and for applications. In order to tailor the required compounds for a specific task, one must be able to predict the energy…

Condensed Matter · Physics 2007-05-23 Nicola Magnani

Fifteen parameters characterizing the crystal field of rare-earth ions in the RMO$_3$ perovskites (R = Pr, Nd, M = Ga, Co) are calculated by expanding the local Hamiltonian expressed in the basis of Wannier functions into a series of…

Strongly Correlated Electrons · Physics 2013-10-24 P. Novak , K. Knizek , M. Marysko , Z. Jirak , J. Kunes

It was recently shown that the optical excitation of rare-earth ions produces a local change of the host matrix shape, attributed to a change of the rare-earth ion's electronic orbital geometry. In this work we investigate the consequences…

Materials Science · Physics 2023-05-01 Anne Louchet-Chauvet , Thierry Chanelière

We present a systematic study of the crystal field interactions in the Li$R$F$_4$, $R$ = Gd, Ho, Er, Tm and Yb, family of rare-earth magnets. Using detailed inelastic neutron scattering measurements we have been able to quantify the…

The unusual and interesting physical properties of rare earth intemetallic compounds have their origin in the combination of strongly correlated 4f states and their hybridization with the conduction electron sea, which gives rise to their…

Strongly Correlated Electrons · Physics 2009-11-11 P. Roura-Bas , V. Vildosola , A. M. Llois

Crystal-field excitations, for example in transition-metal oxides where a rare-earth element is used as a spacer between the transition-metal-oxide tetrahedra and octahedra, are assumed to be extremely robust with respect to external…

Strongly Correlated Electrons · Physics 2021-10-12 Joel O'Brien , Guochu Deng , Dehong Yu , Xiaoxuan Ma , Zhenjie Feng , Wei Ren , Shixun Cao , Robert A. Robinson , Garry J. McIntyre , Clemens Ulrich

We apply the first-principles density functional theory + dynamical mean field theory framework to evaluate the crystal field splitting on rare earth sites in hard magnetic intermetallics. An atomic (Hubbard-I) approximation is employed for…

Strongly Correlated Electrons · Physics 2017-11-15 Pascal Delange , Silke Biermann , Takashi Miyake , Leonid Pourovskii

Directly measuring elementary electronic excitations in dopant $3d$ metals is essential to understanding how they function as part of their host material. Through calculated crystal field splittings of the $3d$ electron band it is shown how…

Using density functional theory plus self-consistent Hubbard $U$ (DFT$+U_{sc}$) calculations, we have investigated the structural and electronic properties of the rare-earth cobaltites \textit{R}CoO$_3$ (\textit{R} = Pr -- Lu). Our…

Strongly Correlated Electrons · Physics 2016-07-27 M. Topsakal , C. Leighton , R. M. Wentzcovitch

We present a crystal field theory of transition metal impurities in semiconductors in a trigonally distorted tetrahedral coordination. We develop a perturbative scheme to treat covalency effects within the weak ligand field case (Coulomb…

Strongly Correlated Electrons · Physics 2009-11-11 R. O. Kuzian , A. M. Daré , P. Sati , R. Hayn

Rare-earth ions are characterised by transitions with very narrow linewidths even in solid state crystals. Exceedingly long coherence times have been shown on both spin and optical transitions of rare-earth-ion doped crystals. A key factor,…

Contrary to the well known spin qubits, rare-earth qubits are characterized by a strong influence of crystal field due to large spin-orbit coupling. At low temperature and in the presence of resonance microwaves, it is the magnetic moment…

Strongly Correlated Electrons · Physics 2009-11-26 Sylvain Bertaina , J. H. Shim , S. Gambarelli , B. Z. Malkin , B. Barbara

The single ion properties of the zig-zag chain compound SrTm$_2$O$_4$ have been investigated using heat capacity, magnetic susceptibility, magnetization, inelastic neutron scattering, and polarized muon spectroscopy. Two crystal field…

Motivated by the potential for cuprate-like superconductivity in monolayer rare-earth nickelate superlattices, we study the effects of crystal field splitting, lattice distortions and strain on the charge, magnetic, and orbital order in…

Strongly Correlated Electrons · Physics 2021-11-12 Rodrigo Chavez Zavaleta , Stepan Fomichev , Giniyat Khaliullin , Mona Berciu

Rare-earth nickelates exhibit a metal-insulator transition accompanied by a structural distortion that breaks the symmetry between formerly equivalent Ni sites. The quantitative theoretical description of this coupled electronic-structural…

Strongly Correlated Electrons · Physics 2019-02-07 Alexander Hampel , Peitao Liu , Cesare Franchini , Claude Ederer

Contribution to thermal conductivity from conduction electron scattering on crystal field magnetic excitations is calculated and analyzed for normal rare-earth inter-metallic paramagnets. It is shown that in temperatures much lower than…

Strongly Correlated Electrons · Physics 2018-08-24 Aleksandra E. Szukiel

The fundamental magnetic interactions of Pr$_{2}$Fe$_{17}$ are studied by inelastic neutron scattering and anisotropy field measurements. Data analysis confirms the presence of three magnetically inequivalent sites, and reveals an…

Materials Science · Physics 2007-05-23 N. Magnani , S. Carretta , G. Amoretti , L. Pareti , A. Paoluzi , R. Caciuffo , J. A. Stride

Rare-earth ion doped crystals are state-of-the-art platforms for processing quantum information, particularly thanks to their excellent optical and spin coherence properties at cryogenic temperatures. Experimental observations have shown…

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