Radiocarbon Calibration/Comparison Records Based on Marine Sediments from the Pakistan and Iberian Margins
Dados Bibliográficos
| ID | 9245126 |
|---|---|
| Autores | Edouard Bard (0000-0002-7237-8622), Guillemette Ménot (0000-0003-2423-8294), Frauke Rostek, Laetitia Licari (0000-0002-9158-5117), Philipp Böning (0009-0003-7375-4567), R Lawrence Edwards (0000-0002-7027-5881), Hai Cheng (0000-0002-5305-9458), Yongjin Wang (0000-0001-9711-2997), Timothy J Heaton (0000-0002-9994-142X) |
| Ano | 2013 |
| Volume | 55 |
| Fascículo | 4 |
| Páginas | 1999-2019 |
| Data de publicação | 2013-01-01 |
| Peer Reviewed | Sim |
| Open Access | Sim |
| Tipo | ARTICLE |
| Periódico | Radiocarbon (JOURNAL) |
| Identificadores do periódico | ISSN: 0033-8222 • E-ISSN: 1945-5755 |
| Editora | Cambridge University Press (CUP) (PUBLISHER) |
| DOI | 10.2458/azu_js_rc.55.17114 |
| OpenAlex | W2158905005 |
| Idioma | EN |
| Citações recebidas | 19 |
| Referências citadas | 74 |
We present a new record of radiocarbon ages measured by accelerator mass spectrometry (AMS) on a deep-sea core collected off the Pakistan Margin. The 14 C ages measured on the planktonic foraminifera Globigerinoides ruber from core MD04-2876 define a high and stable sedimentation rate on the order of 50 cm/kyr over the last 50 kyr. The site is distant from the main upwelling zone of the western Arabian Sea where 14 C reservoir age is large and may be variable. Many independent proxies based on elemental analyses, mineralogy, biomarkers, isotopic proxies, and foraminiferal abundances show abrupt changes correlative with Dansgaard-Oeschger and Heinrich events. It is now common knowledge that these climatic events also affected the Arabian Sea during the last glacial period through changes in the Indian monsoon and in ventilation at intermediate depths. The stratigraphic agreement between all proxies, from fine- to coarse-size fractions, indicates that the foraminiferal 14 C ages are representative of the different sediment fractions. To build a calendar age scale for core MD04-2876, we matched its climate record to the oxygen isotopic (δ 18 O) profile of Hulu Cave stalagmites that have been accurately dated by U-Th (Wang et al. 2001; Southon et al. 2012; Edwards et al., submitted). Both archives exhibit very similar signatures, even for century-long events linked to monsoonal variations. For comparison, we have also updated our previous work on core MD95-2042 from the Iberian Margin (Bard et al. 2004a,b,c), whose climate record has likewise been tuned to the high-resolution δ 18 O Hulu Cave profile. Sophisticated and novel statistical techniques were used to interpolate ages and calculate uncertainties between chronological tie-points (Heaton et al. 2013, this issue). The data from the Pakistan and Iberian margins compare well even if they come from distant sites characterized by different oceanic conditions. Collectively, the data also compare well with the IntCal09 curve, except for specific intervals around 16 cal kyr BP and from 28 to 31 cal kyr BP. During these intervals, the data indicate that 14 C is somewhat older than indicated by the IntCal09 curve. Agreement between the data from both oceanic sites suggests that the discrepancy is not due to local changes of sea-surface 14 C reservoir ages, but rather that the IntCal09 curve needed to be updated in these intervals as has been done in the framework of IntCal13 (Reimer et al. 2013a, this issue)
Benthic zone · Chronology · Climate change · Foraminifera · Glacial period · Globigerinoides · Holocene · Monsoon · Paleoclimatology · Radiocarbon dating · Stalagmite · Geology and Paleoclimatology Research · Marine and environmental studies · Pleistocene-Era Hominins and Archaeology · Geology · Oceanography · Paleontology
Composition and consequences of the IntCal20 radiocarbon calibration curve
Underground Pits (Chultunes) in the Southern Maya Lowlands
The Emergence of Standardized Spatial Plans in Southern Mesoamerica
Dater, une histoire qui date
A new approach to radiocarbon summarisation
Climate variability across the last deglaciation in NW Iberia and its margin
IntCal13 and Marine13 Radiocarbon Age Calibration Curves 0–50,000 Years cal BP
Elastic Tie-Pointing—Transferring Chronologies between Records via a Gaussian Process
Marine20—The Marine Radiocarbon Age Calibration Curve (0–55,000 cal BP)
Wiggle Matching With Correlations
Testing and Improving the IntCal20 Calibration Curve with Independent Records
The Bayesian Approach to Radiocarbon Calibration Curve Estimation
Selection and Treatment of Data for Radiocarbon Calibration
The IntCal20 Approach to Radiocarbon Calibration Curve Construction
A Short Note on Marine Reservoir Age Simulations Used in IntCal20
Development of the Intcal Database
Evolution of Radiocarbon Calibration
The IntCal20 Northern Hemisphere Radiocarbon Age Calibration Curve (0–55 cal kBP)
Dieta e isótopos estables de cazadores recolectores marinos en los canales occidentales de Patagonia, Chile
Gisp2 Oxygen Isotope Ratios
A Pervasive Millennial-Scale Cycle in North Atlantic Holocene and Glacial Climates
A 60 000 year Greenland stratigraphic ice core chronology
Evidence for general instability of past climate from a 250-kyr ice-core record
A high-resolution, absolute-dated Holocene and deglacial Asian monsoon record from Dongge Cave, China
Deglacial changes in ocean circulation from an extended radiocarbon calibration
Correlation between Arabian Sea and Greenland climate oscillations of the past 110,000 years
A 5000-yr Record of Climate Change in Varved Sediments from the Oxygen Minimum Zone off Pakistan, Northeastern Arabian Sea
C Activity and Global Carbon Cycle Changes over the Past 50,000 Years
A High-Resolution Absolute-Dated Late Pleistocene Monsoon Record from Hulu Cave, China
Marine-derived 14C calibration and activity record for the past 50,000 years updated from the Cariaco Basin
Calibration of the 14C timescale over the past 30,000 years using mass spectrometric U–Th ages from Barbados corals
A Large Drop in Atmospheric 14 C/ 12 C and Reduced Melting in the Younger Dryas, Documented with 230 Th Ages of Corals
Macintosh Program performs time‐series analysis
High-Resolution Greenland Ice Core Data Show Abrupt Climate Change Happens in Few Years
Radiocarbon calibration curve spanning 0 to 50,000 years BP based on paired 230Th/234U/238U and 14C dates on pristine corals
Present Status of Radiocarbon Calibration and Comparison Records Based on Polynesian Corals and Iberian Margin Sediments
Intcal04 Terrestrial Radiocarbon Age Calibration, 0–26 Cal Kyr BP
IntCal13 and Marine13 Radiocarbon Age Calibration Curves 0–50,000 Years cal BP
Th- 234 U and 14 C Ages Obtained by Mass Spectrometry on Corals
Elastic Tie-Pointing—Transferring Chronologies between Records via a Gaussian Process
Carbonate 14 C Background
Radiocarbon Levels in the Iceland Sea from 25–53 kyr and their Link to the Earth's Magnetic Field Intensity
Marine04 Marine Radiocarbon Age Calibration, 0–26 Cal Kyr Bp
Marine Radiocarbon Reservoir Effect in Southern Atlantic Iberian Coast
Extended 14 C Data Base and Revised Calib 3.0 14 C Age Calibration Program
Selection and Treatment of Data for Radiocarbon Calibration
Research and Development of the Artemis 14 C AMS Facility
Artemis, the New 14 C AMS at LMC14 in Saclay, France
Radiocarbon Calibration by Means of Mass Spectrometric 230 Th/ 234 U and 14 C Ages of Corals
Comparison of 14 C and U-Th Ages in Corals from Iodp #310 Cores Offshore Tahiti
C Ages of a Varved Last Glacial Maximum Section Off Pakistan
Radiocarbon Calibration and Comparison to 50 Kyr BP with Paired 14 C and 230 Th Dating of Corals from Vanuatu and Papua New Guinea
The Carbonate 14 C Background and its Components at the Leibniz AMS Facility
INTCAL98 Radiocarbon Age Calibration, 24,000-0 cal BP
IntCal09 and Marine09 Radiocarbon Age Calibration Curves, 0-50,000 Years cal BP
| Obras citantes distintas | 19 |
|---|---|
| Citações por ano | 1,46 |
| Intervalo de citações | 2013 - 2025 (13) |
| Velocidade de citação | recent |
| Altamente citado | Não |
| Tipos de citação | Neutras: 16 |