Matches in SemOpenAlex for { <https://semopenalex.org/work/W1986793967> ?p ?o ?g. }
- W1986793967 endingPage "364" @default.
- W1986793967 startingPage "346" @default.
- W1986793967 abstract "Optically stimulated luminescence (OSL) dating of perennially frozen loess was tested on quartz grains extracted from deposits associated with the late Pleistocene Dawson tephra in western Yukon Territory, Canada. OSL samples were obtained from ice-rich loess bracketing the Dawson tephra, while radiocarbon (14C) samples were collected from the bulk sediments directly underlying the tephra and from a ground-squirrel burrow 2.7 m below the tephra. Here we report the OSL characteristics and ages of the extracted quartz grains, as well as additional radiocarbon ages for samples described in Froese [2002. Age and significance of the late Pleistocene Dawson tephra in eastern Beringia. Quaternary Science Reviews 21, 2137–2142; 2006. Seasonality of the late Pleistocene Dawson tephra and exceptional preservation of a buried riparian surface in central Yukon Territory, Canada. Quaternary Science Reviews 25, 1542–1551]. We refine the time of Dawson tephra deposition to between 25,420±70 and 25,290±80 14C a BP. Bayesian analysis of constraining radiocarbon ages places the deposition of the Dawson tephra at between 30,433 and 30,032 cal a BP. Linear modulation (LM) OSL analysis of multi-grain aliquots of quartz showed that the initial part of the decay curve is dominated by a rapidly bleached (‘fast’) component; these samples, however, had relatively dim continuous wave (CW) OSL signals at the multi-grain aliquot (each composed of ∼80 grains) and single-grain scales of analysis. The single-aliquot regenerative-dose protocol was applied to multi-grain aliquots and single grains to obtain equivalent dose (De) values for samples collected from below and above the Dawson tephra. The De values were examined graphically and numerically, the latter using the central age, minimum age, and finite mixture models. For multi-grain aliquots, the central age model gave weighted mean De values between 30 and 50 Gy, which greatly underestimated the expected De of ∼74–81 Gy for both samples studied. Possible reasons for these underestimations are discussed, and a solution proposed based on single-grain analysis. Measurements of single grains produced De values in agreement with the expected De, and yielded OSL ages of 28±5 and 30±4 ka for the samples taken from above and below the Dawson tephra, respectively. Examination of individual grains with differing luminescence behaviors showed that a significant number of the measured quartz grains exhibited anomalous luminescence properties that would have compromised the results obtained from multi-grain aliquots. We therefore recommend analysis of individual grains to overcome the age-shortfall from multi-grain analysis of these and similar samples of quartz." @default.
- W1986793967 created "2016-06-24" @default.
- W1986793967 creator A5018043423 @default.
- W1986793967 creator A5019751266 @default.
- W1986793967 creator A5024966932 @default.
- W1986793967 creator A5045444652 @default.
- W1986793967 creator A5084137381 @default.
- W1986793967 creator A5091840482 @default.
- W1986793967 date "2008-11-01" @default.
- W1986793967 modified "2023-09-25" @default.
- W1986793967 title "Optically stimulated luminescence dating of single and multiple grains of quartz from perennially frozen loess in western Yukon Territory, Canada: Comparison with radiocarbon chronologies for the late Pleistocene Dawson tephra" @default.
- W1986793967 cites W1963567114 @default.
- W1986793967 cites W1966450145 @default.
- W1986793967 cites W1975727520 @default.
- W1986793967 cites W1977805458 @default.
- W1986793967 cites W1980425636 @default.
- W1986793967 cites W1981661000 @default.
- W1986793967 cites W1989855120 @default.
- W1986793967 cites W1997977860 @default.
- W1986793967 cites W2000828887 @default.
- W1986793967 cites W2001638953 @default.
- W1986793967 cites W2003856860 @default.
- W1986793967 cites W2004028082 @default.
- W1986793967 cites W2011267698 @default.
- W1986793967 cites W2013642792 @default.
- W1986793967 cites W2014931048 @default.
- W1986793967 cites W2029404592 @default.
- W1986793967 cites W2031766720 @default.
- W1986793967 cites W2032699259 @default.
- W1986793967 cites W2041652096 @default.
- W1986793967 cites W2041685910 @default.
- W1986793967 cites W2045861792 @default.
- W1986793967 cites W2050887064 @default.
- W1986793967 cites W2057916174 @default.
- W1986793967 cites W2058214570 @default.
- W1986793967 cites W2068010249 @default.
- W1986793967 cites W2069590793 @default.
- W1986793967 cites W2070207029 @default.
- W1986793967 cites W2073160037 @default.
- W1986793967 cites W2089288741 @default.
- W1986793967 cites W2109269291 @default.
- W1986793967 cites W2110481174 @default.
- W1986793967 cites W2113863927 @default.
- W1986793967 cites W2124958235 @default.
- W1986793967 cites W2127821685 @default.
- W1986793967 cites W2127844960 @default.
- W1986793967 cites W2137828959 @default.
- W1986793967 cites W2151920427 @default.
- W1986793967 cites W2152155649 @default.
- W1986793967 cites W2154276443 @default.
- W1986793967 cites W2154858287 @default.
- W1986793967 cites W2162448741 @default.
- W1986793967 cites W2164982993 @default.
- W1986793967 cites W2165166287 @default.
- W1986793967 cites W2343681342 @default.
- W1986793967 cites W82726093 @default.
- W1986793967 doi "https://doi.org/10.1016/j.quageo.2007.12.003" @default.
- W1986793967 hasPublicationYear "2008" @default.
- W1986793967 type Work @default.
- W1986793967 sameAs 1986793967 @default.
- W1986793967 citedByCount "77" @default.
- W1986793967 countsByYear W19867939672012 @default.
- W1986793967 countsByYear W19867939672013 @default.
- W1986793967 countsByYear W19867939672014 @default.
- W1986793967 countsByYear W19867939672015 @default.
- W1986793967 countsByYear W19867939672016 @default.
- W1986793967 countsByYear W19867939672017 @default.
- W1986793967 countsByYear W19867939672018 @default.
- W1986793967 countsByYear W19867939672019 @default.
- W1986793967 countsByYear W19867939672021 @default.
- W1986793967 countsByYear W19867939672022 @default.
- W1986793967 countsByYear W19867939672023 @default.
- W1986793967 crossrefType "journal-article" @default.
- W1986793967 hasAuthorship W1986793967A5018043423 @default.
- W1986793967 hasAuthorship W1986793967A5019751266 @default.
- W1986793967 hasAuthorship W1986793967A5024966932 @default.
- W1986793967 hasAuthorship W1986793967A5045444652 @default.
- W1986793967 hasAuthorship W1986793967A5084137381 @default.
- W1986793967 hasAuthorship W1986793967A5091840482 @default.
- W1986793967 hasConcept C100134115 @default.
- W1986793967 hasConcept C110307207 @default.
- W1986793967 hasConcept C114793014 @default.
- W1986793967 hasConcept C120806208 @default.
- W1986793967 hasConcept C127313418 @default.
- W1986793967 hasConcept C151730666 @default.
- W1986793967 hasConcept C160464908 @default.
- W1986793967 hasConcept C166957645 @default.
- W1986793967 hasConcept C17409809 @default.
- W1986793967 hasConcept C185515318 @default.
- W1986793967 hasConcept C205649164 @default.
- W1986793967 hasConcept C2779870107 @default.
- W1986793967 hasConcept C53570757 @default.
- W1986793967 hasConcept C87457978 @default.
- W1986793967 hasConceptScore W1986793967C100134115 @default.
- W1986793967 hasConceptScore W1986793967C110307207 @default.
- W1986793967 hasConceptScore W1986793967C114793014 @default.
- W1986793967 hasConceptScore W1986793967C120806208 @default.
- W1986793967 hasConceptScore W1986793967C127313418 @default.