Doping Dependence of Collective Spin and Orbital Excitations in the Spin-1 Quantum Antiferromagnet La_{2-x}Sr_{x}NiO_{4} Observed by X Rays.
Physical review letters 118:15 (2017) 156402-156402
Abstract:
We report the first empirical demonstration that resonant inelastic x-ray scattering (RIXS) is sensitive to collective magnetic excitations in S=1 systems by probing the Ni L_{3} edge of La_{2-x}Sr_{x}NiO_{4} (x=0, 0.33, 0.45). The magnetic excitation peak is asymmetric, indicating the presence of single and multi-spin-flip excitations. As the hole doping level is increased, the zone boundary magnon energy is suppressed at a much larger rate than that in hole doped cuprates. Based on the analysis of the orbital and charge excitations observed by RIXS, we argue that this difference is related to the orbital character of the doped holes in these two families. This work establishes RIXS as a probe of fundamental magnetic interactions in nickelates opening the way towards studies of heterostructures and ultrafast pump-probe experiments.Spin dynamics in the antiferromagnetic phases of the Dirac metals AMnBi(2) (A = Sr, Ca)
PHYSICAL REVIEW B 95:13 (2017) ARTN 134405
Room Temperature Neutron Crystallography of Drug Resistant HIV‑1 Protease Uncovers Limitations of X‑ray Structural Analysis at 100 K
Journal of Medicinal Chemistry American Chemical Society (ACS) 60:5 (2017) 2018-2025
Spindynamics in the antiferromagnetic phases of the Dirac metals $A$MnBi$_2$ ($A=$ Sr, Ca)
(2017)
Inelastic neutron scattering investigations of an anisotropic hybridization gap in the kondo insulators: CeT2 Al10 (T=Fe, Ru and Os)
Solid State Phenomena 257 (2017) 11-25