Middle Paleolithic complex technology and a Neandertal tar-backed tool from the Dutch North Sea
Marcel J. L. Th. Niekus (Stichting STONE/Foundation for Stone Age Research in The Netherlands)
Paul R.B. Kozowyk (Universiteit Leiden)
G.H.J. Langejans (TU Delft - (OLD) MSE-4, University of Johannesburg)
D.J.M. Ngan-Tillard (TU Delft - Geo-engineering)
Henk van Keulen (Cultural Heritage Agency of the Netherlands)
Johannes van der Plicht (Rijksuniversiteit Groningen)
Kim Cohen (Universiteit Utrecht)
Bertil van Os (Cultural Heritage Agency of the Netherlands)
Bjørn I. Smit (Cultural Heritage Agency of the Netherlands)
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Abstract
We report the discovery of a 50,000-y-old birch tar-hafted flint tool found off the present-day coastline of The Netherlands. The production of adhesives and multicomponent tools is considered complex technology and has a prominent place in discussions about the evolution of human behavior. This find provides evidence on the technological capabilities of Neandertals and illuminates the currently debated conditions under which these technologies could be maintained. 14C-accelerator mass spectrometry dating and the geological provenance of the artifact firmly associates it with a host of Middle Paleolithic stone tools and a Neandertal fossil. The find was analyzed using pyrolysis-gas chromatography-mass spectrometry, X-ray micro-computed tomography, and optical light microscopy. The object is a piece of birch tar, encompassing one-third of a flint flake. This find is from northwestern Europe and complements a small set of well-dated and chemically identified adhesives from Middle Paleolithic/Middle Stone Age contexts. Together with data from experiments and other Middle Paleolithic adhesives, it demonstrates that Neandertals mastered complex adhesive production strategies and composite tool use at the northern edge of their range. Thus, a large population size is not a necessary condition for complex behavior and technology. The mitigation of ecological risk, as demonstrated by the challenging conditions during Marine Isotope Stage 4 and 3, provides a better explanation for the transmission and maintenance of technological complexity.