4.7 Article

Luminescence dating of the PASADO core 5022-1D from Laguna Potrok Aike (Argentina) using IRSL signals from feldspar

Journal

QUATERNARY SCIENCE REVIEWS
Volume 71, Issue -, Pages 70-80

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.quascirev.2013.03.018

Keywords

Luminescence; K-feldspar; Post-IR IRSL; Bleaching; ICDP-project PASADO

Funding

  1. International Continental Scientific Drilling Program (ICDP) in the framework of the Potrok Aike Maar Lake Sediment Archive Drilling Project (PASADO)
  2. ICDP
  3. German Science Foundation (DFG)
  4. Swiss National Funds (SNF)
  5. Natural Sciences and Engineering Research Council of Canada (NSERC)
  6. Swedish Vetenskapsradet (VR)
  7. University of Bremen
  8. Danish Independent Research Council [11-104566]

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We have measured and tested a luminescence chronology for the PASADO core 5022-1D from the maar lake of Laguna Potrok Aike. Because of unsuitable quartz OSL characteristics, sand-sized K-feldspar extracts were chosen as a dosimeter and the dose was measured using a post-IR IRSL (pIRIR(290)) measurement protocol. Using this approach we were able to access a stable signal and thus avoid the ubiquitous problem of feldspar signal instability. Extensive laboratory tests show that the chosen pIRIR(290) protocol is applicable to these samples. We also developed a new criterion based on known relative bleaching rates of the conventional IRSL signal (IR50) and the pIRIR(290) signal and the relationship between resulting equivalent doses; this is used to identify and reject poorly bleached samples. Eighteen samples out of 47 were rejected based on this criterion, without reference to absolute doses or stratigraphy; the resulting age-depth profile is self-consistent, increases smoothly with depth and is in agreement with independent age control based on volcanic ash layers (Reclus, Mt Burney and Hudson tephras) at the top and middle of the core. Our new luminescence chronology suggests that the 5022-1D core reaches back to similar to 65 ka at similar to 96 m below lake floor. (c) 2013 Elsevier Ltd. All rights reserved.

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