activity
20172022
most citedSpin excitations in the frustrated triangular lattice antiferromagnet NaYbO

75 citations · 120 across the 5 of their papers we have counts for

collaborators

6 papers

cond-mat.str-el202121 cited

Magnetic properties and signatures of moment ordering in triangular lattice antiferromagnet KCeO

Mitchell M. Bordelon, Xiaoling Wang, Daniel M. Pajerowski +9

The magnetic ground state and the crystalline electric field level scheme of the triangular lattice antiferromagnet KCeO are investigated. Below 300 mK, KCeO develo…

cond-mat.str-el202018 cited

Antiferromagnetism and crystalline-electric field excitations in tetragonal NaCeO2

Mitchell M. Bordelon, Joshua D. Bocarsly, Lorenzo Posthuma +3

We investigate the crystal structure, magnetic properties, and crystalline-electric field of tetragonal, , NaCeO. In this compound, Ce ions form a tetragonally…

cond-mat.str-el2020

Frustrated Heisenberg model within the stretched diamond lattice of LiYbO2

Mitchell M. Bordelon, Chunxiao Liu, Lorenzo Posthuma +7

We investigate the magnetic properties of LiYbO, containing a three-dimensionally frustrated, diamond-like lattice via neutron scattering, magnetization, and heat capacity meas…

cond-mat.str-el202075 cited

Spin excitations in the frustrated triangular lattice antiferromagnet NaYbO

Mitchell Bordelon, Chunxiao Liu, Lorenzo Posthuma +6

Here we present a neutron scattering-based study of magnetic excitations and magnetic order in NaYbO under the application of an external magnetic field. The crystal electric f…

cond-mat.str-el2019

Field-tunable quantum disordered ground state in the triangular lattice antiferromagnet NaYbO

Mitchell Bordelon, Eric Kenney, Tom Hogan +8

Antiferromagnetically coupled S=1/2 spins on an isotropic triangular lattice is the paradigm of frustrated quantum magnetism, but structurally ideal realizations are rare. Here we…

cond-mat.str-el20173 cited

Tuning the antiferromagnetic helical pitch length and nanoscale domain size in FePOO by magnetic dilution

M. J. Tarne, M. M. Bordelon, S. Calder +2

The insulating magnetic material Fe3PO4O3 features a non-centrosymmetric lattice composed of Fe^{3+} triangular units. Frustration, due to competing near neighbor () and next…