activity
20102013
most citedThe magnetic and crystal structures of Sr2IrO4: A neutron diffraction study

204 citations · 431 across the 7 of their papers we have counts for

collaborators
Showing cond-mat.str-elShow all

6 papers · 1 filter

cond-mat.str-el2013204 cited

The magnetic and crystal structures of Sr2IrO4: A neutron diffraction study

Feng Ye, Songxue Chi, Bryan C. Chakoumakos +3

We report a single-crystal neutron diffraction study of the layered . This work unambiguously determines the magnetic structure of the system and reveals that the sp…

cond-mat.str-el2012113 cited

Testing the validity of the strong spin-orbit-coupling limit for octahedrally coordinated iridates in a model system SrCuIrO

X. Liu, Vamshi M. Katukuri, L. Hozoi +12

The electronic structure of SrCuIrO, a model system for the 5d Ir ion in an octahedral environment, is studied through a combination of resonant inelastic x-ray scattering…

cond-mat.str-el2012114 cited

Spin-orbit tuned metal-insulator transitions in single-crystal Sr2Ir1-xRhxO4 (0\leqx\leq1)

T. F. Qi, O. B. Korneta, L. Li +6

Sr2IrO4 is a magnetic insulator driven by spin-orbit interaction (SOI) whereas the isoelectronic and isostructural Sr2RhO4 is a paramagnetic metal. The contrasting ground states ha…

cond-mat.str-el2012

Field-induced magnetic behavior of the bilayer iridate Sr3Ir2O7

J. P. Clancy, K. W. Plumb, C. S. Nelson +4

We have performed resonant magnetic x-ray scattering (RMXS) measurements on single crystal samples of the bilayer iridate Sr3Ir2O7. We observe the development of antiferromagnetic…

cond-mat.str-el2010

Giant Magnetoelectric Effect in Antiferromagnetic BaMnO3-δand Its Derivatives

O. B. Korneta, T. F. Qi, M. Ge +4

Hexagonal perovskite 15R-BaMnO2.99 with a ratio of cubic to hexagonal layers of 1/5 in the unit cell is an antiferromagnetic insulator that orders at a Néel temperature TN = 220 K.…

cond-mat.str-el2010

Ca2Ru1-xCrxO4 (0 < x < 0.13): Negative volume thermal expansion via orbital and magnetic orders

T. F. Qi, O. B. Korneta, S. Parkin +3

Ca2RuO4 undergoes a metal-insulator transition at TMI = 357 K, followed by a well-separated transition to antiferromagnetic order at TN = 110 K. Dilute Cr doping for Ru reduces the…