DOI: 10.1144/jgs2026-082 ISSN: 0016-7649

Rapid arc-ophiolite formation during the Grampian-Taconic event: evolution of the Tyrone Igneous Complex, Northern Ireland

S.P. Hollis, M.R. Cooper, S. Tapster, P. Mongeau, D. van Acken, J. Shaw, R. Hilderman, S.J. Piercey, I.J. Nash, D.J. Condon

The Grampian-Taconic event of the broader Caledonian-Appalachian orogenic cycle records the accretion of oceanic tracts, arc terranes and microcontinental blocks the Laurentian margin during the early Palaeozoic. We present new field constraints, whole rock geochemistry, Sm-Nd isotope data and U-Pb zircon geochronology from the Tyrone Igneous Complex. The ca. 484-480 Ma Tyrone Plutonic Group forms the structurally lowest levels of the complex and preserves a tectonically dissected suprasubduction affinity ophiolite, obducted onto an outboard fragment of Laurentian microcontinental crust (the Tyrone Central Inlier). A new U-Pb zircon age of S-type muscovite granite from Tremoge Glen (c. 477 Ma) suggests ophiolite obduction was likely coeval with the emplacement of the Ballantrae ophiolite of Scotland at c. 480-478 Ma. A 5 Myr magmatic gap in the Tyrone Igneous Complex (c. 477-473 Ma) likely relates to a subduction polarity reversal at this time or jump into the Irish equivalent of the Taconic seaway. The structurally overlying ca. 473-469 Ma Tyrone Volcanic Group formed upon the Tyrone Central Inlier and records episodes of intra-arc rifting and backarc volcanism. Continental arc magmatism continued until c. 464 Ma through the emplacement of I-type granite and sheets of quartz-feldspar porphyry. In the British and Irish Caledonides, the Tyrone Volcanic Group correlates with Middle Ordovician continental volcanic arc rocks of Charlestown and Connemara, and the late ‘within-plate’ volcanic sequences at Ballantrae.