activity
20162020
most citedEmergent electric field control of phase transformation in oxide superlattices

61 citations · 83 across the 2 of their papers we have counts for

collaborators

6 papers

cond-mat.str-el202022 cited

Strain-modulated Slater-Mott crossover of pseudospin-half square-lattice in (SrIrO3)1/ (SrTiO3)1 superlattices

Junyi Yang, Lin Hao, Derek Meyers +15

We report on the epitaxial strain-driven electronic and antiferromagnetic modulations of a pseudospin-half square lattice realized in superlattices of (SrIrO3)1/(SrTiO3)1. With inc…

cond-mat.mtrl-sci202061 cited

Emergent electric field control of phase transformation in oxide superlattices

Di Yi, Yujia Wang, Olaf M. J. van 't Erve +13

Electric fields can transform materials with respect to their structure and properties, enabling various applications ranging from batteries to spintronics. Recently electrolytic g…

cond-mat.mtrl-sci2018

Anomalous dielectric response at intermixed oxide heterointerfaces

Valentino R. Cooper, Houlong L. Zhuang, Lipeng Zhang +3

Two-dimensional charge carrier accumulation at oxide heterointerfaces presents a paradigm shift for oxide electronics. Like a capacitor, interfacial charge buildup couples to an el…

cond-mat.mtrl-sci2018

Oxygen vacancy formation energies in PbTiO/SrTiO superlattice

Lipeng Zhang, Isaac Bredeson, Axiel Yaël Birenbaum +4

The defect stability in a prototypical perovskite oxide superlattice consisting of SrTiO and PbTiO (STO/PTO) is determined using first principles density functional theory…

cond-mat.str-el2018

Giant magnetic response of a two-dimensional antiferromagnet

Lin Hao, D. Meyers, Hidemaro Suwa +14

A fundamental difference between antiferromagnets and ferromagnets is the lack of linear coupling to a uniform magnetic field due to the staggered order parameter. Such coupling is…

cond-mat.str-el2016

Atomic-scale control of magnetic anisotropy via novel spin-orbit coupling effect in La2/3Sr1/3MnO3/SrIrO3 superlattices

Di Yi, Jian Liu, Shang-Lin Hsu +11

Magnetic anisotropy (MA) is one of the most important material properties for modern spintronic devices. Conventional manipulation of the intrinsic MA, i.e. magnetocrystalline anis…