Selected Publications
Selected Publications
Instrumentation and Analytical Methods
Cisneros, Miguel & Miller, Hayden & Treffkorn, Jonathan & Oerter, Erik & Singleton, Michael & Farley, Kenneth & Vasconcelos, P. & Donald, Scott. (2022). AN INTERLABORATORY COMPARISON OF THE GOETHITE (SITE-SPECIFIC) OXYGEN ISOTOPE THERMOMETER. 10.1130/abs/2022AM-380897.
Cox, Stephen & Miller, Hayden & Hofmann, Florian & Farley, Kenneth. (2022). Short communication: Mechanism and prevention of irreversible trapping of atmospheric He during mineral crushing. Geochronology. 4. 551-560. 10.5194/gchron-4-551-2022.
Farley K., Treffkorn J. and Hamilton D. (2020) Isobar-free neon isotope measurements of flux-fused potential reference minerals on a Helix-MC-Plus10K mass spectrometer. CHEMICAL GEOLOGY 537.
Avice G., Belousov A., Farley K. A., Madzunkov S. M., Simcic J., Nikolic D., Darrach M. R. and Sotin C. (2019) High-precision measurements of krypton and xenon isotopes with a new static-mode quadrupole ion trap mass spectrometer. JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY 34, 104–117.
Cosmogenic Dating
Campos, Daniela & Monteiro, Hevelyn & Vasconcelos, P. & Farley, Kenneth & Silva, Alexandre & Vidal-Torrado, Pablo. (2023). A new model of bauxitization in quartzitic landscapes: A case study from the Southern Espinhaço Range (Brazil). Earth Surface Processes and Landforms. 48. 10.1002/esp.5660.
Benites, Mariana & Hein, James & Mizell, Kira & Farley, Kenneth & Treffkorn, Jonathan & Jovane, Luigi. (2021). Geochemical insights into formation of enigmatic ironstones from Rio Grande rise, South Atlantic Ocean. Marine Geology. 444. 106716. 10.1016/j.margeo.2021.106716.
Hofmann F., Cooperdock E., West A., Hildebrandt D., Strössner K. and Farley K. (2021) Exposure dating of detrital magnetite using 3He enabled by microCT and calibration of the cosmogenic 3He production rate in magnetite. GEOCHRONOLOGY 3, 395–414.
Balbas A. and Farley K. (2020) Constraining in situ cosmogenic nuclide paleo-production rates using sequential lava flows during a paleomagnetic field strength low. CHEMICAL GEOLOGY 532.
Larsen I., Farley K. and Lamb M. (2019) Cosmogenic 3He production rate in ilmenite and the redistribution of spallation 3He in fine-grained minerals. GEOCHIMICA ET COSMOCHIMICA ACTA 265, 19–31.
Vasconcelos P., Farley K., Stone J., Piacentini T. and Fifield L. (2019) Stranded landscapes in the humid tropics: Earth's oldest land surfaces. EARTH AND PLANETARY SCIENCE LETTERS 519, 152–164.
Extraterrestrial He Flux
Farley, Kenneth & Taylor, Susan & Treffkorn, Jonathan & Lever, James & Gow, Anthony. (2021). 3He flux obtained from South Pole air and snow‐ice and its connection to interplanetary dust particles. Meteoritics & Planetary Science. 56. 10.1111/maps.13759.
Bralower T., Cosmidis J., Fantle M., Lowery C., Passey B., Gulick S., Morgan J., Vajda V., Whalen M., Wittmann A., Artemieva N., Farley K., Goderis S., Hajek E., Heaney P., Kring D., Lyons S., Rasmussen C., Sibert E., Tovar F., Turner-Walker G., Zachos J., Carte J., Chen S., Cockell C., Coolen M., Freeman K., Garber J., Gonzalez M., Gray J., Grice K., Jones H., Schaefer B., Smit J. and Tikoo S. (2020) The Habitat of the Nascent Chicxulub Crater. AGU ADVANCES 2, e2020AV000208
Schmitz B., Farley K., Goderis S., Heck P., Bergström S., Boschi S., Claeys P., Debaille V., Dronov A., van Ginneken M., Harper D., Iqbal F., Friberg J., Liao S., Martin E., Meier M., Peucker-Ehrenbrink B., Soens B., Wieler R. and Terfelt F. (2019) An extraterrestrial trigger for the mid-Ordovician ice age: Dust from the breakup of the L-chondrite parent body. SCIENCE ADVANCES 5.
(Uranium-Thorium)/Helium Geochronology
Conceição, Fabiano & Vasconcelos, P. & Navarro, Guillermo & Farley, Kenneth. (2024). 40Ar/39Ar and (U-Th)/He constraints on emplacement, exhumation, and weathering of alkaline-carbonatite complexes in the Alto Paranaíba Igneous Province (APIP), Brazil. Gondwana Research. 130. 10.1016/j.gr.2024.01.010.
Monteiro, Hevelyn & Vasconcelos, P. & Farley, K.A. & Mello, C.L. & Conceição, F.T.. (2022). Long-term vegetation-induced goethite and hematite dissolution-reprecipitation along the Brazilian Atlantic margin. Palaeogeography, Palaeoclimatology, Palaeoecology. 601. 111137. 10.1016/j.palaeo.2022.111137.
Mueller, Jessica & Farley, Kenneth & Vasconcelos, P. & McCurry, Matthew. (2022). (U-TH)/HE GEOCHRONOLOGY OF MCGRATHS FLAT LAGERSTÄTTE. 10.1130/abs/2022AM-382574.
Hofmann F., Treffkorn J. and Farley K. (2020) U-loss associated with laser-heating of hematite and goethite in vacuum during (U-Th)/He dating and prevention using high O2 partial pressure. CHEMICAL GEOLOGY 532.
Farley K. A. (2018) Helium diffusion parameters of hematite from a single-diffusion-domain crystal. Geochimica et Cosmochimica Acta 231, 117–129.
Deep Earth Geochemistry
Horton, F. & Asimow, P. & Farley, K. & Curtice, J. & Kurz, Mark & Blusztajn, J. & Biasi, Joseph & Boyes, X.. (2023). Highest terrestial He/He credibly from the core. Nature. 623. 1-5. 10.1038/s41586-023-06590-8.
Swindle, Carl & Clark, Doug & Farley, Kenneth. (2023). Helium isotope evidence for mixing of mantle-derived fluids and deeply penetrating surface waters in an obducted peridotite massif. Geochimica et Cosmochimica Acta. 353. 10.1016/j.gca.2023.05.015.
Mars
Farley K. A., Stack K. M., Shuster D. L., Horgan B. H. N., Hurowitz J. A., Tarnas J. D., Simon J. I., Sun V. Z., Scheller E. L., Moore K. R., McLennan S. M., Vasconcelos P. M., Wiens R. C., Treiman A. H., Mayhew L. E., Beyssac O., Kizovski T. V., Tosca N. J., Williford K. H., Crumpler L. S., Beegle L. W., Bell J. F., Ehlmann B. L., Liu Y., Maki J. N., Schmidt M. E., Allwood A. C., Amundsen H. E. F., Bhartia R., Bosak T., Brown A. J., Clark B. C., Cousin A., Forni O., Gabriel T. S. J., Goreva Y., Gupta S., Hamran S.-E., Herd C. D. K., Hickman-Lewis K., Johnson J. R., Kah L. C., Kelemen P. B., Kinch K. B., Mandon L., Mangold N., Quantin-Nataf C., Rice M. S., Russell P. S., Sharma S., Siljeström S., Steele A., Sullivan R., Wadhwa M., Weiss B. P., Williams A. J., Wogsland B. V., Willis P. A., Acosta-Maeda T. A., Beck P., Benzerara K., Bernard S., Burton A. S., Cardarelli E. L., Chide B., Clavé E., Cloutis E. A., Cohen B. A., Czaja A. D., Debaille V., Dehouck E., Fairén A. G., Flannery D. T., Fleron S. Z., Fouchet T., Frydenvang J., Garczynski B. J., Gibbons E. F., Hausrath E. M., Hayes A. G., Henneke J., Jørgensen J. L., Kelly E. M., Lasue J., Mouélic S. L., Madariaga J. M., Maurice S., Merusi M., Meslin P.-Y., Milkovich S. M., Million C. C., Moeller R. C., Núñez J. I., Ollila A. M., Paar G., Paige D. A., Pedersen D. A. K., Pilleri P., Pilorget C., Pinet P. C., Rice J. W., Royer C., Sautter V., Schulte M., Sephton M. A., Sharma S. K., Sholes S. F., Spanovich N., Clair M. S., Tate C. D., Uckert K., VanBommel S. J., Yanchilina A. G. and Zorzano M.-P. (2022) Aqueously altered igneous rocks sampled on the floor of Jezero crater, Mars. Science 377, eabo2196.