most citedFresnel diffraction imaging of surface nanostructure using coherent resonant X-ray scattering

4 citations · 4 across the 1 of their papers we have counts for

collaborators

6 papers

cond-mat.mtrl-sci20264 cited

Fresnel diffraction imaging of surface nanostructure using coherent resonant X-ray scattering

L. Burgard, C. Neupane, A. Balodhi +9

We investigated surface nanostructures on an antiferromagnet MnBiTe using a novel imaging technique, direct (real)-space and real time coherent X-ray imaging (direct-CXI).…

physics.optics2026

X-ray Fractional Orbital Angular Momentum from Coherent Magnetic Scattering

P. D. Montgomery, J. S. Woods, M. R. McCarter +10

Artificial spin ice (ASI) based on a square lattice with a topological defect are known to generate orbital angular momentum (OAM) in diffracted X-ray beams. A previous investigati…

cond-mat.str-el2026

Excitations across the equilibrium and photoinduced `hidden' states of magnetoresistive manganites

Shiyu Fan, Feng Jin, Taehun Kim +16

"Hidden" phases, generated using ultrafast laser pulses (few hundred femtoseconds), with properties distinct from thermodynamic equilibrium, are appealing for technologies because…

cond-mat.mtrl-sci2025

Dynamics and formation of antiferromagnetic textures in MnBiTe single crystal

M. G. Kim, S. Boney, L. Burgard +2

We report coherent X-ray imaging of antiferromagnetic (AFM) domains and domain walls in MnBiTe, an intrinsic AFM topological insulator. This technique enables direct visual…

cond-mat.str-el2025

Magnetic excitations and absence of charge order in the van der Waals ferromagnet FeGeTe

V. K. Bhartiya, T. Kim, J. Li +12

Understanding the ground state of van der Waals (vdW) magnets is crucial for designing devices leveraging these platforms. Here, we investigate the magnetic excitations and charge…

cond-mat.str-el2025

Evidence of electronic states driving current-induced insulator-to-metal transition

V. K. Bhartiya, R. Hartmann, F. Forte +16

On demand current-driven insulator-to-metal transition (IMT) is pivotal for the next generation of energy-efficient and scalable microelectronics. IMT is a key phenomenon observed…