The Best possible Time resolution: How precise could a Radiocarbon dating method be?
Наилучшее возможное временно́е разрешение: насколько точным может быть радиоуглеродный метод датирования?
2019-11-08
SCID: 54.1/gebdu5y5
Discuss with AI
14C calibration curveIntCal13accelerator mass spectrometryradiocarbon datingtime resolution
Figures from the paper
Abstract (AI)
ABSTRACT Today, accelerator mass spectrometry (AMS) technology enables us to carry out very precise measurements of radiocarbon ( 14 C). Unfortunately, due to fluctuations in the 14 C calibration curve, the resulting calibrated time intervals vary from decades up to centuries in calibrated age. Within a time scale of several decades, we can find several time intervals on the 14 C calibration curve which correspond with periods of rapid increases in atmospheric 14 CO 2 activity. Some of these “high slope” parts of the calibration curve could be used for fine time resolution for radiocarbon dating of individual samples. Nevertheless, there are certain limitations owing to the properties of the samples measured. We have prepared a time-resolution curve for the 14 C dating method, applying calibration curve IntCal13 and assuming an uncertainty of 14 C analyses ±15 yr BP (for recent samples). Our curve of the time resolution covers the last 50 ka. We found several time intervals with time resolution below 50 yr BP for the last 3 ka. Several time intervals which can enable substantially better time resolution compared to neighboring parts of the calibration curve were also found for periods older than 3 ka.
Key Findings
1
Although AMS provides highly precise radiocarbon measurements, calibration-curve fluctuations can expand resulting calibrated age intervals from decades to centuries.
2
Older than 3 ka, multiple intervals provide substantially better temporal resolution than neighboring calibration-curve regions, although sample properties impose limitations.
3
Rapid-increase, high-slope segments of the atmospheric 14C calibration curve can enable fine-resolution dating of individual samples.
4
Several intervals within the last 3 ka achieve time resolutions below 50 yr BP.
5
Using IntCal13 and an assumed ±15 yr BP analytical uncertainty, the study constructed a radiocarbon time-resolution curve covering the last 50 ka.
Research Object
the radiocarbon (14C) dating method and its calibration curve (IntCal13)
Research Subject
the achievable time resolution and limiting factors of radiocarbon dating across the last 50 ka
Publication Details
Publication Date
2019-11-08
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest