Storage timescales and the crystal growth history recorded in the layered reservoir of the Unit 3 Kulanaokuaiki Tephra Member of the Uēkahuna Ash from Kīlauea volcano
The Kulanaokuaiki Tephra Unit 3 (900 C.E.) was a subplinian basaltic scoria eruption, the largest known to have occurred at Kīlauea’s summit. The initiation mechanism and cause(s) of this highly hazardous eruption remain poorly understood, particularly as this style of activity has not been observed in the modern period. We use olivine diffusion timescales from Fe-Mg and lithium zoning to assess magma storage timescales and evaluate evidence for mixing prior to eruption. Of the 200 crystals assessed, 55% are normally zoned for forsterite and 45% are non-zoned. Zoned crystals (> 1 mm) (n = 96) have average compositions of Fo89 cores and Fo81 rims, while small crystals 0.5–1 mm (n = 14) have Fo85 cores and Fo82 rims. Modeled Fo diffusion timescales range from
Citation Information
| Publication Year | 2026 |
|---|---|
| Title | Storage timescales and the crystal growth history recorded in the layered reservoir of the Unit 3 Kulanaokuaiki Tephra Member of the Uēkahuna Ash from Kīlauea volcano |
| DOI | 10.1007/s00410-026-02353-6 |
| Authors | Abigail Nalesnik, Kendra J. Lynn, Timothy R. Rose, Jessica M. Warren, Dawn Catherine Sweeney Ruth, Kuan-Yu Lin, Don Swanson |
| Publication Type | Article |
| Publication Subtype | Journal Article |
| Series Title | Contributions to Mineralogy and Petrology |
| Index ID | 70279143 |
| Record Source | USGS Publications Warehouse |
| USGS Organization | Volcano Science Center |