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RE-EVALUATING THE BRONZE AND EARLIEST IRON AGE IN LATVIA: CHANGES IN BURIAL TRADITIONS IN THE LIGHT OF 14C DATES

Published online by Cambridge University Press:  26 February 2021

Dardega Legzdiņa*
Affiliation:
Institute of Latvian History, University of Latvia, Kalpaka Blvd. 4, RigaLV-1050, Latvia
Andrejs Vasks
Affiliation:
Institute of Latvian History, University of Latvia, Kalpaka Blvd. 4, RigaLV-1050, Latvia
Eduards Plankājs
Affiliation:
Institute of Latvian History, University of Latvia, Kalpaka Blvd. 4, RigaLV-1050, Latvia
Gunita Zariņa
Affiliation:
Institute of Latvian History, University of Latvia, Kalpaka Blvd. 4, RigaLV-1050, Latvia
*
*Corresponding author. Email: [email protected].

Abstract

Until recently, there was a lack of radiocarbon (14C) dates from the Bronze and Earliest Iron Age (1800–500–1 BC) burial sites in Latvia. The chronology of the sites was assessed on the basis of archaeological analogies with neighboring regions and typological studies of the rather meagre grave inventory. In order to establish a firm foundation for an absolute chronology of burial sites and to better understand changes in mortuary practices during the period, sequences of samples from various burial sites have been dated. In this paper we report 48 14C dates from 12 different sites and discuss them in the context of previously established archaeological chronologies. 14C reservoir effects are addressed: regarding FRE, stable isotope analysis is helpful; however, more data should be gathered in future research. In some cases, the new dates are in accord with previous chronologies, while in other cases some widely accepted assumptions may need to be revised. The new dates have proved false several previous assumptions about both the dates of individual graves and whole sites. Based on the 14C dates, we model the chronological spread of burial barrows in Latvia along waterways, the earliest examples appearing in coastal western Latvia.

Type
Conference Paper
Copyright
© The Author(s), 2021. Published by Cambridge University Press for the Arizona Board of Regents on behalf of the University of Arizona

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Footnotes

Selected Papers from the 9th Radiocarbon & Archaeology Symposium, Athens, GA, USA, 20–24 May 2019

References

REFERENCES

Bronk Ramsey, C. 2009. Bayesian analysis of radiocarbon dates. Radiocarbon 51(1):337–60.CrossRefGoogle Scholar
Ciglis, J, Vasks, A. 2017. Jauni bronzas un senākā dzelzs laikmeta apbedīšanas vietu datējumi ar radioaktīvā oglekļa metodi [New radiocarbon datings of the Bronze and Earliest Iron Age burial sites]. Latvijas Vēstures Institūta Žurnāls 1 (102):3561.Google Scholar
Denisova, R, Graudonis, J, Gravere, R. 1985. Kivutkalnskij mogilnjik epoki bronzi [The Bronze Age Cemetery Ķivutkalns]. Riga: Zinātne.Google Scholar
Fokkens, H, Harding, A, editors. 2013. The Oxford Handbook of the European Bronze Age. Oxford: Oxford University Press.CrossRefGoogle Scholar
Girininkas, A. 2013. Ankstyvasis metalų laikotarpis. [The Bronze and Earliest Iron Age.] Lietuvos archeologija, II tomas. Klaipėda: Klaipėdos Universitetas.Google Scholar
Graudonis, I. 1967. Latvia v epokhu pozdnej bronzy I rannego zheleza [Latvia in the Late Bronze and Early Iron Age]. Riga: Zinātne.Google Scholar
Grigalavičienė, E. 1995. Žalvario ir ankstyvasis geležies amžius Lietuvoje. [Bronze and earliest Iron Age in Lithuania.] Vilnius: Mokslo ir encuklopedių leidykla.Google Scholar
Harding, AF. 2000. European societies in the Bronze Age. Cambridge University Press.CrossRefGoogle Scholar
Hensel, W, editor. 1978. Wczesna epoka brązu. [The early Bronze Age.] Prahistoria ziem Polskich, III. Wrocław, Warszawa, Kraków, Gdańsk: Ossolineum.Google Scholar
Kovács, T. 1977. The Bronze Age in Hungary. Budapest: Corvina Press.Google Scholar
LA. 1974. Latvijas PSR arheoloǵija [Archaeology of Latvian SSR]. Riga: Zinātne.Google Scholar
Lang, V. 2007. The Bronze and Early Iron Age in Estonia. Estonian Archaeology. Tartu University Press.Google Scholar
Lougheed, BC, Filipsson, HL, Snowball, I. 2013. Large spatial variations in coastal 14C reservoir age—a case study from the Baltic Sea. Climate of the Past (9):1015–1028.CrossRefGoogle Scholar
Oinonen, M, Vasks, A, Zariņa, G, Lavento, M. 2013. Stones, bones, and hillfort: radiocarbon dating of Ķivutkalns bronze-working center. Radiocarbon 55 (2–3):12521264.CrossRefGoogle Scholar
Pesonen, P, Oinonen, M, Carpelan, C, Onkamo, P. 2012. Early Subneolithic ceramic sequences in eastern Fennoscandia—a Bayesian approach. Radiocarbon 54 (3–4):661676.CrossRefGoogle Scholar
Piličiauskas, G, Heron, C. 2015. Aquatic radiocarbon reservoir offsets in the southeastern Baltic. Radiocarbon 57 (4):539556.CrossRefGoogle Scholar
Reimer, PJ, Bard, E, Bayliss, A, Beck, JW, Blackwell, PG, Bronk Ramsey, C, Buck, C, Cheng, H, Edwards, RL, Friedrich, M, Grootes, PM, Guilderson, TP, Haflidason, H, Hajdas, I, Hatté C, Heaton TJ, Hoffmann DL, Hogg AG, Hughen KA, Kaiser KF, Kromer B, Manning SW, Niu M, Reimer RW, Richards DA, Scott EM, Southon JR, Staff RA, Turney CSM, van der Plicht J. 2013. IntCal13 and Marine13 radiocarbon age calibration curves 0–50,000 years cal BP. Radiocarbon 55(4):1869–1887.CrossRefGoogle Scholar
Soneck, C, Brock, F, Schulting, RJ. 2015. Carbon exchanges between bone apatite and fuels during cremation: impact on radiocarbon dates. Radiocarbon 51 (2):591602.Google Scholar
Šnore, E. 1970. Kamennii mogilnik v Lazdini [Stone grave cemetery at Lazdiņi] Studia archaeologica in memoriam Harri Moora. Tallinn: Valgus. p. 189196.Google Scholar
Šturms, E. 1936. Pirmās bronzas laikmeta kapenes Latvijā [The First burial-ground in Latvia]. Senatne un māksla 1:70–84.Google Scholar
Gunnarssone, A, Oras, E, Talbot, HM, Ilves, K, Legzdiņa, D. 2020. Cooking for the living and the dead: lipid analyses of Rauši settlement and cemetery pottery from the 11th–13th century. Estonian Journal of Archaeology 24–1:4569.CrossRefGoogle Scholar
Thrane, H. 2013. Scandinavia. The Oxford handbook of European Bronze Age.CrossRefGoogle Scholar
Vasks, A. 2007. Bronze-working centres in the system of social relations in the territory of Latvia during the Early Metal Period. In: Merkevičius A, editor. Colours of archaeology. Material culture and the society. Papers from the Second Theoretical Seminar of the Baltic Archaeologists (BASE) held at the University of Vilnius, Lithuania, October 21–22, 2005. Interarchaeologia 2. Vilnius, Helsinki, Riga, Tartu. p. 65–77.Google Scholar
Vasks, A. 2000. Bronzas laikmeta kapulauks Pukuļos [The Bronze Age burial-ground at Pukuļi]. Arheoloǵija un etnogrāfija 20:88106.Google Scholar
Vasks, A, Zariņa, G. 2014. Ķivutkanna pilskalns un kapulauks: jauni dati un jaunas problēmas [Ķivutkalns Hill-Fort and cemetery: new data and new problems]. Latvijas Vēstures Institūta Žurnāls 3 (92):536.Google Scholar
Vasks, A, Zariņa, G, Legzdiņa, D, Plankājs, E. In press. New data on funeral customs and burials of the Bronze Age Reznes cemetery in Latvia. Estonian Journal of Archaeology.Google Scholar
Zariņa, A. 1987. Salaspils Vējstūru kapulauki [Salaspils Vējstūri cemeteries]. Arheoloǵija un etnogrāfija 15:1944.Google Scholar
Zazzo, A, Saliège, J-F, Lebon, M, Lepetz, S. 2012. Radiocarbon dating of calcined bones: insights from combustion experiments under natural conditions. Radiocarbon 54 (3–4): 855866.CrossRefGoogle Scholar
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