Abstract
Calcium-aluminum-rich inclusions (CAIs) in meteorites carry crucial information about the environmental conditions of the nascent Solar System prior to planet formation. Based on models of 50V-10Be co-production by in-situ irradiation, CAIs are considered to have formed within ∼0.1 AU from the proto-Sun. Here, we present vanadium (V) and strontium (Sr) isotopic co-variations in fine- and coarse-grained CAIs and demonstrate that kinetic isotope effects during partial condensation and evaporation best explain V isotope anomalies previously attributed to solar particle irradiation. We also report initial excesses of 10Be and argue that CV CAIs possess essentially a homogeneous level of 10Be, inherited during their formation. Based on numerical modeling of 50V-10Be co-production by irradiation, we show that CAI formation during protoplanetary disk build-up likely occurred at greater heliocentric distances than previously considered, up to planet-forming regions (∼1AU), where solar particle fluxes were sufficiently low to avoid substantial in-situ irradiation of CAIs.
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CITATION STYLE
Bekaert, D. V., Auro, M., Shollenberger, Q. R., Liu, M. C., Marschall, H., Burton, K. W., … Nielsen, S. G. (2021). Fossil records of early solar irradiation and cosmolocation of the CAI factory: A reappraisal. Science Advances, 7(40). https://doi.org/10.1126/sciadv.abg8329
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