References

BHANDARI N., BHAT S.G., LAL D., RAJAGOPALAN G., TAMHANE A.S. & VENKATAVARADAN V.S. 1971. Fission fragment lengths in apatite: recordable track lengths. Earth and Planetary Science Letters 13, 191-199.

BIGAZZI G. 1967. Length of fission tracks and age of muscovite samples. Earth and Planetary Science Letters 3, 434-438.

BRAUN J., VAN DER BEEK P. and BATT G. 2006. Quantitative Thermochronology, Cmabridge University Press, Cambridge, 258 p.

CARLSON W.D. & DONELICK R.A. 1993. Compositional dependence of apatite fission track annealing rates. EOS, Transactions Americal Geophysical Union 74, 168.

CROWLEY K.D. & YOUNG J. 1988. Automated mirror-image stage (AMIS) for external- detector fission track analysis. Nuclear Tracks & Radiation Measurements 17, 410.

CROWLEY K.D., CAMERON M. & SCHAFFER L.R. 1991. Experimental studies of annealing of etched fission tracks in fluorapatite. Geochimica et Cosmochimica Acta 55:1449-1465

DAKOWSKI M. 1978. Length distributions of fission tracks in thick crystals. Nuclear Track Detection 28, 181-189.

DONELICK R.A., O’SULLIVAN P.B. & KETCHAM R.A. 2005. Apatite Fission-Track Analysis. Reviews in Mineralogy & Geochemistry 58, 49-94.

EHLERS T.A., CHAUDHRI T., KUMAR, S., FULLER C.W., WILLETT S.D., KETCHAM R.A., BRANDON M.T., BELTON D.X., KOHN B.P., GLEADOW A.J.W., DUNAI T.J. and FU F.Q. 2005. Computational tools for low-temperature thermochronometer interpretation. Reviews in Mineralogy & Geochemistry 58, 589-622.

FLEISCHER R.L. & HART H.R. 1972. Fission track dating: techniques and problems. in W.W. Bishop, J.A. Miller and S. Cole (eds) Calibration of hominid evolution. Scottish Academic Press, Edinburgh. 135-170.

FLEISCHER R.L. & PRICE P.B. 1964. Techniques for geological dating of minerals by chemical etching of fission fragment tracks. Geochimica et Cosmochimica Acta 28, 1705- 1714.

FLEISCHER R.L., PRICE P.B. & WALKER, R.L. 1975. Nuclear tracks in solids. University of California Press, Berkeley.

GALBRAITH R.F. 1981. On statistical models for fission track counts. Mathematical Geology 13, 471-478.

GALBRAITH R.F. 2005. Statistics for fission track analysis. Chapman & Hall, Boca Raton, 219 p..

GALBRAITH R.F. & LASLETT G.M. 1993. Statistical Models for mixed fission track ages. Nuclear Tracks & Radiation Measurements 21, 459-470.

GALLAGHER K. 2012. Transdimensional inverse thermal history modeling for quantitative thermochronology. Journal of Geophysical Research-Solid Earth 117, Article B02408, DOI: 10.1029/ 2011JB008825.

GALLAGHER K, BROWN R.W. and JOHNSON C. 1998. Fission track analysis and its application to geological problems. Annual Reviews of Earth and Planetary Sciences. 26, 519-572.

GLEADOW A.J.W. 1978. Anisotropic and variable track etching characteristics in natural sphenes. Nuclear Track Detection 2, 105-117.

GLEADOW A.J.W. 1981. Fission track dating methods: what are the real alternatives. Nuclear Tracks 5, 3-14.

GLEADOW A.J.W. & DUDDY I.R. 1981. A natural long-term track annealing experiment for apatite. Nuclear Tracks 5:169-174

GLEADOW A.J.W. & LOVERING J.F. 1977. Geometry factor for external detectors in fission track dating. Nuclear Track Detection 1, 99-106.

GLEADOW A.J.W. and SEILER C., 2015. Fission Track Dating and Thermochronology. In Rink W.J. and Thompson J.W. (eds), Encyclopedia of Scientific Dating Methods. Springer, Dordrecht, 978p.

GLEADOW A.J.W., HURFORD A.J. & QUIAFE R.D. 1976. Fission track dating of zircon: improved etching techniques. Earth and Planetary Science Letters 33, 273-276.

GLEADOW A.J.W., LEIGH-JONES P., DUDDY I.R. & LOVERING J.F. 1982. An automated microscope stage system for fission track dating and particle track mapping. Workshop on Fission Track Dating. Fifth Internat. Conf. Geochron. Cosmochron, Idot. Geol. Nikko, Japan. Abstracts 22-23

GLEADOW, A.J.W., BELTON, D.X., KOHN, B.P. & BROWN, R.W. 2002. Fission track dating of phosphate minerals and the thermochronology of apatite. In J Hughes, M. Kohn and J. Rakovan (eds) Phosphates, Geochemical, Geobiological and Materials Importance, Reviews in Mineralogy and Geochemistry 48, 579-630

GLEADOW, A.J.W., GLEADOW, S.J., BELTON D.X., KOHN, B.P. & KROCHMAL M.S., 2009. Coincidence Mapping a key strategy for automated counting in fission track dating. In: Ventura, B., Lisker, F. and Glasmacher, U.A. (eds.), Thermochronological methods: from palaeotemperature constraints to landscape evolution models. Geological Society of London Special Publication 324, 25-36.

GLEADOW A., KOHN B., SEILER C., 2019. The future of fission track thermochronology. Chapter 4 in M.G. Malusa and P.G. Fitzgerald (eds), Fission track thermochronology and its application to geology. Springer-Nature. 77-92.

GREEN P.F. 1981a. "Track-in-track" length measurements in annealed apatites. Nuclear Tracks 5, 121-128.

GREEN P.F. 1981b. A new look at statistics in fission track dating. Nuclear Tracks 5, 77-86. GREEN P.F. & DURRANI S.A. 1978. A quantitative assessment of geometry factors for use in fission track studies. Nuclear Track Detection 2, 207-213.

GREEN P.F. & HURFORD A.J. 1984. Neutron dosimetry in fission track dating: a xtheoretical background and some practical precautions. Nuclear Tracks 9, 231-241.

GREEN P.F., DUDDY I.R., GLEADOW A.J.W., TINGATE P.R. & LASLETT G.M. 1985 Fission track annealing in apatite: track length measurements and the form of the Arrhenius plot. Nuclear Tracks 10, 323-328.

GREEN P.F., DUDDY I.R., GLEADOW A.J.W., TINGATE P.R. & LASLETT G.M. 1986. Thermal annealing of fission tracks in apatite, 1. A qualitative description. Chemical Geology: Isotope Geoscience 59, 237-253.

GREEN P.F., DUDDY I.R., GLEADOW A.J.W. & LOVERING J.F. 1989. Apatite fission track analysis as a paleotemperature indicator for hydrocarbon exploration. In: Naeser ND, McCulloh, TH (eds) Thermal History of Sedimentary Basins: Methods and Case Histories, Springer-Verlag, Berlin, p 81-195

HASEBE N., BARBERAND J., Jarvis K., Carter A. & HURFORD A.J. 2004. Apatite fission-track chronometry using laser ablation ICP-MS. Chemical Geology 207, 135-145.

HASEBE N., CARTER A., HURFORD A.J. & ARAI S. 2009. The effect of chemical etching on LA-ICP-MS analysis in determining uranioum conentration for fission-track chronometry. In: Ventura, B., Lisker, F. and Glasmacher, U.A. (eds.), Thermochronological methods: from palaeotemperature constraints to landscape evolution models. Geological Society of London Special Publication 324, 37-46.

HURFORD A.J. 1990a. International Union of Geological Sciences Subcommission on Geochronology Recommendation for standardization of fission track dating calibration and data reporting. Nucelar Tracks 17, 233-236.

HURFORD A.J. 1990b. Standardization of fission track dating calibration: Recommendation by the Fission Track Working Group of the IUGS Subcommission on Geochronology. Chemical Geology 80, 171-178.

HURFORD A.J. 2019. An historical perspective on Fission-Track Thermochronology. in M.G. Malusa and P.G. Fitzgerald (eds), Fission track thermochronology and its application to geology. Springer-Nature, 3-23.

HURFORD A.J. & GREEN P.F. 1982. A user's guide to fission track dating calibration. Earth and Planetary Science Letters. 59, 343-354.

HURFORD A.J. & GREEN P.F. 1983. The zeta age calibration of fission track dating. Chemical Geology: Isotope Geoscience 1, 285-317.

KETCHAM R.A. 2005. Forward and Inverse Modelling of Low-temperature thermochronometry data. Reviews in Mineralogy & Geochemistry 58, 275-314.

KHAN H.A. & DURRANI S.A. 1972. Prolonged etching factor in solid state nuclear track detection and its applications. Radiation Effects 13, 257-266.

KOHN BP, GLEADOW AJW, BROWN RW, GALLAGHER K, LORENCAK M and NOBLE WP, 2005. Visualising Thermotectonic and Denudation Histories using Apatite Fission Track Thermochronology. In P. Reiners, and T. Ehlers, (eds) Thermochronology, Reviews in Mineralogy and Geochemistry 58, 527-565.

KRISHNASWAMI S., LAL D., PRABHU N. & MACDOUGALL D. 1974. Characteristics of fission tracks in zircon: applications to geochronology and cosmology. Earth and Planetary Science Letters 22, 51-59.

LAL D., RAJAN R.S. & TAMHANE A.S. 1969. Chemical composition of nuclei of Z>22 in cosmic rays using meteoritic minerals as detectors. Nature 221, 33-37.

LASLETT G.M., KENDALL W.S., GLEADOW A.J.W. & DUDDY I.R. 1982. Bias in measurement of fission-track length distributions. Nuclear Tracks 6, 79-85.

LISKER F., VENTURA B. & GLASMACHER U.A. 2009. Apatite thermochronology in modern geology. In: Ventura, B., Lisker, F. and Glasmacher, U.A. (eds.), Thermochronological methods: from palaeotemperature constraints to landscape evolution models. Geological Society of London Special Publication 324, 1-23.

MALUSA M.G. & FITZGERALD P.G. (eds), 2019. Fission track thermochronology and its application to geology. Springer-Nature, 393 p.

NAESER C.W. 1967. The use of apatite and sphene for fission track age determinations. Bulletin, Geological Society of America 78, 1523-1526.

NAESER C.W., GLEADOW A.J.W. & WAGNER G.A. 1979. Standardization of fission- track data reports. Nuclear Tracks 3, 133-136.

NAESER C.W., IZETT G.A. & OBRADOVITCH J.D. 1980. Fission-track and K-Ar ages of natural glasses. U.S. Geological Survey Bulletin 1489, 1-31.

NAESER C.W., ZIMMERMAN R.A. & CEBULA G.T. 1981. Fission track dating of apatite and zircon: an inter-laboratory comparison. Nuclear Tracks 5, 65-72

O’SULLIVAN P.B. & PARRISH R.R. 1995. The importance of apatite composition and single-grain ages when interpreting fission track data from plutonic rocks: a case study fro the Coast Ranges, British Columbia. Earth and Planetary Science Letters 132:213-224

PRICE P .B. & W ALKER R.L. 1962a. Observation of charged-particle tracks in solids. Journal of Applied Physics 33, 3400-3406.

PRICE P.B. & WALKER R.L. 1962b. Chemical etching of charged-particle tracks in solids. Journal of Applied Physics 3407-3412.

PRICE P.B. & WALKER R.L. 1962c. Observation of fossil particle tracks in natural micas. Nature 196, 732-734.

PRICE P.B. & WALKER R.L. 1963. Fossil tracks of charged-particles in mica and the age of minerals. Jornal of Geophysical Research 68, 4847-4862.

REIMER M.G., STORZER D. & WAGNER G.A. 1970. Geometry factor in fission track counting. Earth and Planetary Science Letters 9, 401-404.

SILK E.C.H. & BARNES R.S. 1959. Examination of fission fragment tracks in an electron microscope. Philosophical Magazine 4, 970-971.

SMITH M.J. & LEIGH-JONES P. 1985. An automated microscope scanning stage for fission track dating. Nuclear Tracks 10, 395-400.

TAGAMI T., and O’SULLIVAN P.B. 2005. Fundamentals of Fission-Track Thermochronology. Reviews in Mineralogy & Geochemistry 58, 19-47.

VERMEESCH, P. 2009. RadialPlotter: a Java application for fission track, luminescence and other radial plots, Radiation Measurements, 44, 4, 409-410.

WAGNER G.A. 1978. Archaeological applications of fission-track dating. Nuclear Track Detrection 2, 51-63.

WAGNER G.A. & STORZER D. 1972. Fission track length reductions in minerals and the thermal history of rocks. Transactions American Nuclear Socociety 15, 127.

WAGNER G.A. & VAN DEN HAUTE P. 1992. Fission Track Dating. Kluwer Academic, Dordrecht, 285p.