<?xml version="1.0" encoding="UTF-8"?><?xml-stylesheet type="text/xsl" href="static/style.xsl"?><OAI-PMH xmlns="http://www.openarchives.org/OAI/2.0/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.openarchives.org/OAI/2.0/ http://www.openarchives.org/OAI/2.0/OAI-PMH.xsd"><responseDate>2026-09-24T03:34:36Z</responseDate><request verb="GetRecord" identifier="oai:www.repository.cam.ac.uk:1810/322158" metadataPrefix="uketd_dc">https://api.repository.cam.ac.uk/server/oai/request</request><GetRecord><record><header><identifier>oai:www.repository.cam.ac.uk:1810/322158</identifier><datestamp>2023-12-22T12:54:46Z</datestamp><setSpec>com_1810_195764</setSpec><setSpec>com_1810_256064</setSpec><setSpec>col_1810_219098</setSpec></header><metadata><uketd_dc:uketddc xmlns:uketd_dc="http://naca.central.cranfield.ac.uk/ethos-oai/2.0/" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:dcterms="http://purl.org/dc/terms/" xmlns:uketdterms="http://naca.central.cranfield.ac.uk/ethos-oai/terms/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:doc="http://www.lyncode.com/xoai" xsi:schemaLocation="http://naca.central.cranfield.ac.uk/ethos-oai/2.0/ http://naca.central.cranfield.ac.uk/ethos-oai/2.0/uketd_dc.xsd">
   <dc:title>Velocity and anisotropy structure of the Icelandic crust - An ambient seismic noise analysis</dc:title>
   <dc:identifier xsi:type="dcterms:DOI">10.17863/CAM.69617</dc:identifier>
   <dc:creator>Volk, Omry</dc:creator>
   <uketdterms:advisor>Rawlinson, Nicholas</uketdterms:advisor>
   <uketdterms:authoridentifier xsi:type="uketdterms:ORCID">000000026977291X</uketdterms:authoridentifier>
   <uketdterms:advisor>White, Robert</uketdterms:advisor>
   <dcterms:abstract>Measuring the travel times of seismic waves is one of the most important tools for uncovering
Earth’s structure and dynamics. In recent years, the discovery that surface wave dispersion
could be estimated from ambient noise has introduced new possibilities into the field of
seismic imaging, such as performing passive source tomography in regions where it was not
previously possible with a dense azimuthal ray path coverage. In this work, I leverage the
new possibilities introduced by this method to investigate the crust in Iceland in a number of
ways, including tomographic imaging as well as azimuthal and radial anisotropy analyses in
both the lower and upper crust.
Understanding accretion and deformation processes at mid-ocean ridges is crucial because
they control the resulting oceanic crustal structure, which covers two-thirds of the
Earth’s surface. Iceland, which is uplifted by a convective mantle plume and has an active
spreading ridge system exposed above sea level, offers a unique opportunity for studying this
phenomenon.
I first use a dataset of Love and Rayleigh wave dispersion measurements with dense
azimuthal coverage to constrain seismic anisotropy in the Icelandic crust. I show that seismic
anisotropy in the lower crust is controlled by crystal preferred orientation, providing a direct
observation of lower crustal flow. Furthermore, since shear is needed to align the crystals, our
result reveals that crustal flow cannot be a simple translation of mass and requires internal
deformation. This finding has important implications for how thick, hot oceanic crust, as
found in volcanic rifted margins and near plume-ridge interactions, can accrete and deform.
Despite the growing use of ambient noise in measuring crustal properties, extensive
comparisons between ambient noise results and those obtained from local earthquakes
remain elusive. To address this, I measure Love and Rayleigh group velocity using ambient
noise recorded around Askja, a large active volcano in central Iceland, explore its velocity
structure and anisotropy and compare my findings to those from local earthquake studies. I
show that crack properties estimated using surface wave anisotropy strongly correlate with
local shear wave splitting and outcrop mapping, indicating the method is highly effective
for such analyses. Next, I show that VSV models derived from Rayleigh waves can be
significantly faster than VS extracted from body waves, which has important implications for
viii
jointly exploiting these two classes of data. Furthermore, 3D VSV and VSH models constrained
by the data through a two-step inversion procedure resolve a shallow slow anomaly consistent
with a magma chamber predicted by geodetic studies, but not imaged by local earthquake
body wave tomography.
I then measure Love and Rayleigh phase velocities from ambient noise in Iceland in the
period range 7 - 16 s from more than 3000 station pairs. This involves the development
and use of an automatic method for extracting phase velocities from noise cross-correlation
functions (NCF). The phase travel times are then inverted for phase velocity maps. I present
the first Love phase velocity maps of Iceland and show that like Rayleigh phase velocities,
Love phase velocities display slow anomalies along the rift zones with the lowest velocities
in the neighbourhood large volcanic centres, which I attribute to the presence of partial melt.</dcterms:abstract>
   <uketdterms:institution>University of Cambridge</uketdterms:institution>
   <dcterms:issued>2020-11-21</dcterms:issued>
   <dc:type>Thesis</dc:type>
   <uketdterms:qualificationlevel>Doctoral</uketdterms:qualificationlevel>
   <uketdterms:qualificationname>Doctor of Philosophy (PhD)</uketdterms:qualificationname>
   <dc:language>eng</dc:language>
   <dcterms:isReferencedBy xsi:type="dcterms:URI">https://www.repository.cam.ac.uk/handle/1810/322158</dcterms:isReferencedBy>
   <dc:identifier xsi:type="dcterms:URI">https://apollo8-f-pro.lib.cam.ac.uk/bitstreams/0931137f-ab08-4961-be60-8a81fcdd5bd2/download</dc:identifier>
   <uketdterms:checksum xsi:type="uketdterms:MD5">5a75fdd12b3a9f49c972aa5427f0a8d9</uketdterms:checksum>
   <dcterms:license>https://apollo8-f-pro.lib.cam.ac.uk/bitstreams/e6fee01e-3e70-4f3c-9547-dd7f331dbc90/download</dcterms:license>
   <uketdterms:checksum xsi:type="uketdterms:MD5">353adac0d1ebdfd65ab16480263c3c87</uketdterms:checksum>
   <dc:rights>https://www.rioxx.net/licenses/all-rights-reserved/</dc:rights>
   <dc:subject>Seismology</dc:subject>
   <dc:subject>Ambient Noise</dc:subject>
   <dc:subject>Iceland</dc:subject>
   <dc:subject>Tectonics</dc:subject>
</uketd_dc:uketddc>
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