127 research outputs found
A Model for Isotropic Crystal Growth from Vapor on a Patterned Substrate
We developed a consistent mathematical model for isotropic crystal growth on
a substrate covered by the mask material with a periodic series of parallel
long trenches where the substrate is exposed to the vapor phase. Surface
diffusion and the flux of particles from vapor are assumed to be the main
mechanisms of growth. A geometrical approach to the motion of crystal surface
in two dimensions is adopted and nonlinear evolution equations are solved by a
finite-difference method. The model allows the direct computation of the
crystal surface shape, as well as the study of the effects due to mask regions
of effectively nonzero thickness. As in experiments, lateral overgrowth of
crystal onto the mask and enhanced growth in the region near the contact of the
crystal and the mask is found, as well as the comparable crystal shapes. The
growth rates in vertical and lateral directions are investigated.Comment: 21 pages; submitted to the Journal of Crystal Growt
Dynamics of an Unbounded Interface Between Ordered Phases
We investigate the evolution of a single unbounded interface between ordered
phases in two-dimensional Ising ferromagnets that are endowed with
single-spin-flip zero-temperature Glauber dynamics. We examine specifically the
cases where the interface initially has either one or two corners. In both
examples, the interface evolves to a limiting self-similar form. We apply the
continuum time-dependent Ginzburg-Landau equation and a microscopic approach to
calculate the interface shape. For the single corner system, we also discuss a
correspondence between the interface and the Young tableau that represents the
partition of the integers.Comment: 9 pages, 11 figures, 2-column revtex4 format. V2: references added
and discussion section expanded slightly. Final version for PRE. V3: A few
small additional editorial change
Surface effects in nucleation and growth of smectic B crystals in thin samples
We present an experimental study of the surface effects (interactions with
the container walls) during the nucleation and growth of smectic B crystals
from the nematic in free growth and directional solidification of a mesogenic
molecule () called CCH4 in thin (of thickness in the 10
m range) samples. We follow the dynamics of the system in real time with a
polarizing microscope. The inner surfaces of the glass-plate samples are coated
with polymeric films, either rubbed polyimid (PI) films or monooriented
poly(tetrafluoroethylene) (PTFE) films deposited by friction at high
temperature. The orientation of the nematic and the smectic B is planar. In
PI-coated samples, the orientation effect of SmB crystals is mediated by the
nematic, whereas, in PTFE-coated samples, it results from a homoepitaxy
phenomenon occurring for two degenerate orientations. A recrystallization
phenomenon partly destroys the initial distribution of crystal orientations. In
directional solidification of polycrystals in PTFE-coated samples, a particular
dynamics of faceted grain boundary grooves is at the origin of a dynamical
mechanism of grain selection. Surface effects also are responsible for the
nucleation of misoriented terraces on facets and the generation of lattice
defects in the solid.Comment: 15 pages, 24 figures, submitted to PR
Gamma Prime Precipitate Evolution During Aging of a Model Nickel-Based Superalloy
The microstructural stability of nickel-based superalloys is critical for maintaining alloy performance during service in gas turbine engines. In this study, the precipitate evolution in a model polycrystalline Ni-based superalloy during aging to 1000 hours has been studied via transmission electron microscopy, atom probe tomography and neutron diffraction. Variations in phase composition and precipitate morphology, size and volume fraction were observed during aging, whilst the constrained lattice misfit remained constant at approximately zero. The experimental composition of the γ matrix phase was consistent with thermodynamic equilibrium predictions, whilst significant differences were identified between the experimental and predicted results from the γʹ phase. These results have implications for the evolution of mechanical properties in service and their prediction using modeling methods.The authors wish to acknowledge Mrs. S. Rhodes, Dr. H.T. Pang, Dr. D.M. Collins, and Dr. O.M.D.M. Messé for their assistance with the experiments performed. Funding was provided by the EPSRC/Rolls-Royce Strategic Partnership under EP/M005607/1 and EP/H022309/1. The Oxford Atom Probe facility was funded by the EPSRC under EP/M022803/1. Neutron diffraction beam time was supported through the Canadian Neutron Beam Centre under Experiment number 1258
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Shunt failure in idiopathic intracranial hypertension presenting with spontaneous cerebrospinal fluid leak
A case of spontaneous cerebrospinal (CSF) fluid leak after ventriculoperitoneal shunt (VPS) failure in a patient with idiopathic intracranial hypertension (IIH) is reported. This is the first report of spontaneous CSF leak in an IIH patient without a history of trauma, sinus surgery, or intracranial surgery. The diagnosis was confirmed using thin-sliced post-contrast computed tomography, which revealed a micro-dehiscence of the cribiform plate at the superior aspect of the ethmoid sinus. The patient underwent VPS revision without complication, resulting in complete amelioration of symptoms and cessation of CSF rhinorrhoea at 1 year follow up
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