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20162020
most citedNanoscale lattice strains in self-ion implanted tungsten

38 citations · 38 across the 1 of their papers we have counts for

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cond-mat.mtrl-sci2020

Observation of transient and asymptotic driven structural states of tungsten exposed to irradiation

Daniel R. Mason, Suchandrima Das, Peter M. Derlet +8

Combining spatially resolved X-ray Laue diffraction with atomic-scale simulations, we observe how ion-irradiated tungsten undergoes a series of non-linear structural transformation…

cond-mat.mtrl-sci2020

Annealing of focused ion beam damage in gold microcrystals: An in situ Bragg coherent X-ray diffraction imaging study

David Yang, Nicholas W. Phillips, Kay Song +3

Focused ion beam (FIB) techniques are commonly used to machine, analyse and image materials at the micro- and nanoscale. However, FIB modifies the integrity of the sample by creati…

cond-mat.mtrl-sci202038 cited

Nanoscale lattice strains in self-ion implanted tungsten

N. W. Phillips, H. Yu, S. Das +6

Developing a comprehensive understanding of the modification of material properties by neutron irradiation is important for the design of future fission and fusion power reactors.…

cond-mat.mtrl-sci2019

Mapping data between sample and detector conjugated spaces in Bragg coherent diffraction imaging

David Yang, Nicholas W. Phillips, Felix Hofmann

Bragg coherent X-ray diffraction imaging (BCDI) is a non-destructive, lensless method for 3D-resolved, nanoscale strain imaging in micro-crystals. A challenge, particularly for new…

cond-mat.mtrl-sci2019

Nano-scale imaging of the full strain tensor of specific dislocations extracted from a bulk sample

Felix Hofmann, Nicholas W. Phillips, Suchandrima Das +5

Lattice defects play a key role in determining the properties of crystalline materials. Probing the 3D lattice strains that govern their interactions remains a challenge. Bragg Coh…

cond-mat.mtrl-sci2016

Coherent X-ray measurements of ion-implantation-induced lattice strains in nano-crystals

Felix Hofmann, Edmund Tarleton, Ross J. Harder +6

Focussed Ion Beam (FIB) milling is a mainstay of nano-scale machining. By manipulating a tightly focussed beam of energetic ions, often gallium (Ga+), FIB can sculpt nanostructures…