On waveform correlation measurement uncertainty with implications for temporal changes in inner core seismic waves

We address the uncertainty related to cross-correlation waveform time shift measurements, particularly related to temporal changes in inner core seismic waves. Details of the cross-correlation measurement, including data processing, window length, pick time, sampling rate and the algorithm itself, a...

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Main Authors: Lythgoe, Karen H., Inggrid, Maria I., Yao, Jiayuan
Other Authors: Asian School of the Environment
Format: Article
Language:English
Published: 2021
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Online Access:https://hdl.handle.net/10356/154021
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1540212021-12-18T20:11:37Z On waveform correlation measurement uncertainty with implications for temporal changes in inner core seismic waves Lythgoe, Karen H. Inggrid, Maria I. Yao, Jiayuan Asian School of the Environment School of Physical and Mathematical Sciences Earth Observatory of Singapore Science::Geology Temporal Change of Inner Core Waves Inner Core Differential Rotation We address the uncertainty related to cross-correlation waveform time shift measurements, particularly related to temporal changes in inner core seismic waves. Details of the cross-correlation measurement, including data processing, window length, pick time, sampling rate and the algorithm itself, all affect the calculated time shift. By systematically varying measurement parameters for a set of earthquake doublets we find time shift uncertainties of 0.01 s and 0.02 s for differential times and double differential times respectively. The uncertainty is of a similar magnitude to reported double differential times of PKIKP and PKiKP inner core phases. Accounting for measurement uncertainty results in 80% of values published in a recent study being below the measurement resolution (Yang and Song 2020a). While the temporal variations in inner core phases is not in dispute, properly accounting for uncertainties is needed for robust data interpretation. A re-assessment for the origin of inner core temporal changes is therefore warranted and future studies should account for measurement uncertainty. Nanyang Technological University Published version This work is supported by a Nanyang Presidential Postdoctoral Fellowship awarded to K.L. (No. 04INS000845A620). 2021-12-14T03:37:44Z 2021-12-14T03:37:44Z 2020 Journal Article Lythgoe, K. H., Inggrid, M. I. & Yao, J. (2020). On waveform correlation measurement uncertainty with implications for temporal changes in inner core seismic waves. Physics of the Earth and Planetary Interiors, 309, 106606-. https://dx.doi.org/10.1016/j.pepi.2020.106606 0031-9201 https://hdl.handle.net/10356/154021 10.1016/j.pepi.2020.106606 2-s2.0-85096461165 309 106606 en 04INS000845A620 Physics of the Earth and Planetary Interiors © 2020 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::Geology
Temporal Change of Inner Core Waves
Inner Core Differential Rotation
spellingShingle Science::Geology
Temporal Change of Inner Core Waves
Inner Core Differential Rotation
Lythgoe, Karen H.
Inggrid, Maria I.
Yao, Jiayuan
On waveform correlation measurement uncertainty with implications for temporal changes in inner core seismic waves
description We address the uncertainty related to cross-correlation waveform time shift measurements, particularly related to temporal changes in inner core seismic waves. Details of the cross-correlation measurement, including data processing, window length, pick time, sampling rate and the algorithm itself, all affect the calculated time shift. By systematically varying measurement parameters for a set of earthquake doublets we find time shift uncertainties of 0.01 s and 0.02 s for differential times and double differential times respectively. The uncertainty is of a similar magnitude to reported double differential times of PKIKP and PKiKP inner core phases. Accounting for measurement uncertainty results in 80% of values published in a recent study being below the measurement resolution (Yang and Song 2020a). While the temporal variations in inner core phases is not in dispute, properly accounting for uncertainties is needed for robust data interpretation. A re-assessment for the origin of inner core temporal changes is therefore warranted and future studies should account for measurement uncertainty.
author2 Asian School of the Environment
author_facet Asian School of the Environment
Lythgoe, Karen H.
Inggrid, Maria I.
Yao, Jiayuan
format Article
author Lythgoe, Karen H.
Inggrid, Maria I.
Yao, Jiayuan
author_sort Lythgoe, Karen H.
title On waveform correlation measurement uncertainty with implications for temporal changes in inner core seismic waves
title_short On waveform correlation measurement uncertainty with implications for temporal changes in inner core seismic waves
title_full On waveform correlation measurement uncertainty with implications for temporal changes in inner core seismic waves
title_fullStr On waveform correlation measurement uncertainty with implications for temporal changes in inner core seismic waves
title_full_unstemmed On waveform correlation measurement uncertainty with implications for temporal changes in inner core seismic waves
title_sort on waveform correlation measurement uncertainty with implications for temporal changes in inner core seismic waves
publishDate 2021
url https://hdl.handle.net/10356/154021
_version_ 1720447174652723200