Horan, M. F.Carlson, R.Walker, Richard JJackson, MatthewGarçon, M.Norman, Marc2020-01-220012-821Xhttp://hdl.handle.net/1885/198885The short-lived 146Sm→142Ndisotope system (t1/2=103Ma) provides constraints on the timing and processes of terrestrial silicate fractionation during the early Hadean. Although some Archean terranes preserve variability in 142Nd/144Nd, no anomalies have been resolved previously in young rocks. This study provides high precision 142Nd/144Nd data on a suite of ocean island basalts from Samoa and Hawaii previously shown to have variable depletions in 182W/184W that are inversely correlated with 3He/4He ratios. Improved analytical techniques and multiple replicate analyses of Nd show a variation in μ142Ndvalues between −1.3and +2.7in the suite, relative to the JNdi standard. Given the reproducibility of the standard (±2.9 ppm, 2 SD), two Samoan samples exhibit resolved variability in their 142Nd/144Nd ratios outside of their 95% confidence intervals, suggesting minor variability in the Samoan hotspot. One sample from Samoa has a higher μ142Ndof +2.7, outside the 95% confidence interval (±1.0 ppm) of the average of the JNdi standard. Limited, but resolved, variation in 142Nd/144Nd within the suite suggests the preservation of early Hadean silicate differentiation in the sources of at least some basalts from Samoa. Larger variations of 182W/184W and 3He/4He ratios in the same samples suggest that metal–silicate separation and mantle outgassing left a more persistent imprint on the accessible mantle compared to 142Nd/144Nd ratios which are impacted by early silicate differentiation.This work was funded by the Carnegie Institution for Science.8 pagesapplication/pdfen-AU© 2017 Elsevier B.Vocean island basalt142Ndmantle heterogeneityHadean differentiationHawaiiSamoaTracking Hadean processes in modern basalts with 142-Neodymium2018-02-1510.1016/j.epsl.2017.12.0172019-11-25