Accesso libero

Component Resolved Equivalent Dose Estimation Using TL Glow Curves of Travertine Samples from Anatolia, Turkey

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Afouxenidis D, Polymeris GS, Tsirliganis NC and Kitis G, 2012. Computerised curve deconvolution of TL/OSL curves using a popular spreadsheet program. Radiation Protection Dosimetry 149(3): 363–370, DOI 10.1093/rpd/ncr315. AfouxenidisD PolymerisGS TsirliganisNC KitisG 2012 Computerised curve deconvolution of TL/OSL curves using a popular spreadsheet program Radiation Protection Dosimetry 149 3 363 370 10.1093/rpd/ncr315 Open DOISearch in Google Scholar

Aidona E, Polymeris GS, Camps P, Kondopoulou D, Ioannidis N and Raptis K, 2018. Archaeomagnetic versus luminescence methods: the case of an Early Byzantine ceramic workshop in Thessaloniki, Greece. Archaeological and Anthropological Sciences 10: 725–741, DOI 10.1007/s12520-017-0494-5. AidonaE PolymerisGS CampsP KondopoulouD IoannidisN RaptisK 2018 Archaeomagnetic versus luminescence methods: the case of an Early Byzantine ceramic workshop in Thessaloniki, Greece Archaeological and Anthropological Sciences 10 725 741 10.1007/s12520-017-0494-5 Open DOISearch in Google Scholar

Aitken MJ, 1985. Thermoluminescence dating. Academic Press, London. AitkenMJ 1985 Thermoluminescence dating Academic Press London Search in Google Scholar

Aitken MJ, 1998. An introduction to optical dating: the dating of quaternary sediments by the use of photon-stimulated luminescence. Oxford University Press. AitkenMJ 1998 An introduction to optical dating: the dating of quaternary sediments by the use of photon-stimulated luminescence Oxford University Press Search in Google Scholar

Balian HG and Eddy NW, 1977. Figure Of Merit (FOM): an improved criterion over the normalized chi-square test for assign the goodness-of-fit of gamma ray spectral peaks. Nuclear Instruments and Methods 145, 389–395, DOI 10.1016/0029-554X(77)90437-2. BalianHG EddyNW 1977 Figure Of Merit (FOM): an improved criterion over the normalized chi-square test for assign the goodness-of-fit of gamma ray spectral peaks Nuclear Instruments and Methods 145 389 395 10.1016/0029-554X(77)90437-2 Open DOISearch in Google Scholar

Chen R and McKeever SWS, 1997. Theory of Thermoluminescence and Related Phenomena. World Scientific. ChenR McKeeverSWS 1997 Theory of Thermoluminescence and Related Phenomena World Scientific 10.1142/2781 Search in Google Scholar

Debenham NC, 1983. Reliability of thermos-luminescence dating of stalagmitic calcite. Nature 304: 154–156, DOI 10.1038/304154a0. DebenhamNC 1983 Reliability of thermos-luminescence dating of stalagmitic calcite Nature 304 154 156 10.1038/304154a0 Open DOISearch in Google Scholar

Debenham NC and Aitken MJ, 1984. Thermoluminescence dating of stalagmitic calcite. Archaeometry 26: 155–170, DOI 10.1111/j.1475-4754.1984.tb00330.x. DebenhamNC AitkenMJ 1984 Thermoluminescence dating of stalagmitic calcite Archaeometry 26 155 170 10.1111/j.1475-4754.1984.tb00330.x Open DOISearch in Google Scholar

Down JS, Flower R, Strain JA and Townsend PD, 1985. Thermoluminescence emission spectra of calcite and Iceland spar. Nuclear Tracks and Radiation Measurements 10: 581–589, DOI 10.1016/0735-245X(85)90061-4. DownJS FlowerR StrainJA TownsendPD 1985 Thermoluminescence emission spectra of calcite and Iceland spar Nuclear Tracks and Radiation Measurements 10 581 589 10.1016/0735-245X(85)90061-4 Open DOISearch in Google Scholar

Duller GAT, Penkman KEH and Wintle AG, 2009. Assessing the potential for using biogenic calcites as dosemeters for luminescence dating. Radiation Measurements 44: 429–433, DOI 10.1016/j.radmeas.2009.02.008. DullerGAT PenkmanKEH WintleAG 2009 Assessing the potential for using biogenic calcites as dosemeters for luminescence dating Radiation Measurements 44 429 433 10.1016/j.radmeas.2009.02.008 Open DOISearch in Google Scholar

Fleming S, 1979. Thermoluminescence techniques in archaeology. Clarendon Press. FlemingS 1979 Thermoluminescence techniques in archaeology Clarendon Press Search in Google Scholar

Ford TD and Pedley HM, 1996. A review of tufa and travertine deposits of the world. Earth-Science Reviews 41(3–4): 117–175, DOI 10.1016/S0012-8252(96)00030-X. FordTD PedleyHM 1996 A review of tufa and travertine deposits of the world Earth-Science Reviews 41 3–4 117 175 10.1016/S0012-8252(96)00030-X Open DOISearch in Google Scholar

Galloway RB, 2002. Does limestone show useful optically stimulated luminescence? Ancient TL 20: 1–7. GallowayRB 2002 Does limestone show useful optically stimulated luminescence? Ancient TL 20 1 7 Search in Google Scholar

Halperin A and Braner AA, 1960. Evaluation of thermal activation energies from glow curves. Physical Review 117: 408–415, DOI 10.1103/PhysRev.117.408. HalperinA BranerAA 1960 Evaluation of thermal activation energies from glow curves Physical Review 117 408 415 10.1103/PhysRev.117.408 Open DOISearch in Google Scholar

Ikeya M, 1993. New Applications of Electron Spin Resonance: Dating, Dosimetry and Microscopy. World Scientific, Singapore. IkeyaM 1993 New Applications of Electron Spin Resonance: Dating, Dosimetry and Microscopy World Scientific Singapore 10.1142/1854 Search in Google Scholar

Kitis G, Chen R, Pagonis V, Carinou E and Kamenopoulou V, 2006. Thermoluminescence under an exponential heating function: I. Theory. Journal Of Physics D: Applied Physics 39: 1500–1507, DOI 10.1088/0022-3727/39/8/008. KitisG ChenR PagonisV CarinouE KamenopoulouV 2006 Thermoluminescence under an exponential heating function: I. Theory Journal Of Physics D: Applied Physics 39 1500 1507 10.1088/0022-3727/39/8/008 Open DOISearch in Google Scholar

Kitis G and Vlachos ND, 2012. General semi-analytical expressions for TL, OSL and other luminescence stimulation modes derived from the OTOR model using the Lambert W-function. Radiation Measurements 48: 47–54, DOI 10.1016/j.radmeas.2012.09.006. KitisG VlachosND 2012 General semi-analytical expressions for TL, OSL and other luminescence stimulation modes derived from the OTOR model using the Lambert W-function Radiation Measurements 48 47 54 10.1016/j.radmeas.2012.09.006 Open DOISearch in Google Scholar

Kitis G, Kiyak NG and Polymeris GS, 2015. Temperature lags of luminescence measurements in a commercial luminescence reader. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 359: 60–63, DOI 10.1016/j.nimb.2015.07.041. KitisG KiyakNG PolymerisGS 2015 Temperature lags of luminescence measurements in a commercial luminescence reader Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 359 60 63 10.1016/j.nimb.2015.07.041 Open DOISearch in Google Scholar

Liritzis I, 2000. Advances in thermo- and opto-luminescence dating of environmental materials (sedimentary deposits): part II: applications. Global Nest 2(1): 29–49. LiritzisI 2000 Advances in thermo- and opto-luminescence dating of environmental materials (sedimentary deposits): part II: applications Global Nest 2 1 29 49 Search in Google Scholar

Liritzis I, 2010. Strofilas (Andros Island, Greece): new evidence for the cycladic final neolithic period through novel dating methods using luminescence and obsidian hydration. Journal of Archaeological Science 37: 1367–1377, DOI 10.1016/j.jas.2009.12.041. LiritzisI 2010 Strofilas (Andros Island, Greece): new evidence for the cycladic final neolithic period through novel dating methods using luminescence and obsidian hydration Journal of Archaeological Science 37 1367 1377 10.1016/j.jas.2009.12.041 Open DOISearch in Google Scholar

Liritzis I, 2011. Surface dating by luminescence: an overview. Geochronometria 38: 292–302, DOI 10.2478/s13386-011-0032-7. LiritzisI 2011 Surface dating by luminescence: an overview Geochronometria 38 292 302 10.2478/s13386-011-0032-7 Open DOISearch in Google Scholar

Liritzis Y, 1989. Dating of calcites: some aspects of radiation survey in caves and dose-rates. Bulletin Geologique des Pays Helleniques 34(1): 123–136. LiritzisY 1989 Dating of calcites: some aspects of radiation survey in caves and dose-rates Bulletin Geologique des Pays Helleniques 34 1 123 136 Search in Google Scholar

Liritzis I, Singhvi AK, Feathers JK, Wagner GA, Kadereit A, Zacharias N and Li SH, 2013. Luminescence Dating in Archaeology, Anthropology and Geoarchaeology: an Overview. Springer Briefs in Earth System Sciences. Springer, Heidelberg. DOI 10.1007/978-3-319-00170-8. LiritzisI SinghviAK FeathersJK WagnerGA KadereitA ZachariasN LiSH 2013 Luminescence Dating in Archaeology, Anthropology and Geoarchaeology: an Overview Springer Briefs in Earth System Sciences. Springer Heidelberg 10.1007/978-3-319-00170-8 Open DOISearch in Google Scholar

Liritzis I, Aravantinos V, Polymeris GS, Zacharias N, Fappas I, Agiamarniotis G, Sfampa IK, Vafiadou A and Kitis G, 2015. Witnessing prehistoric Delphi by luminescence dating. Comptes Rendus Palevol 14: 219–232, DOI 10.1016/j.crpv.2014.12.007. LiritzisI AravantinosV PolymerisGS ZachariasN FappasI AgiamarniotisG SfampaIK VafiadouA KitisG 2015 Witnessing prehistoric Delphi by luminescence dating Comptes Rendus Palevol 14 219 232 10.1016/j.crpv.2014.12.007 Open DOISearch in Google Scholar

McDougal DJ, 1968. Thermoluminescence of Geological Materials. London University Press. McDougalDJ 1968 Thermoluminescence of Geological Materials London University Press Search in Google Scholar

Ninagawa K, 1987. Thermoluminescence dating of fossil calcite shells. Japanese Journal of Applied Physics 26: 2127–2133, DOI 10.1143/JJAP.26.2127. NinagawaK 1987 Thermoluminescence dating of fossil calcite shells Japanese Journal of Applied Physics 26 2127 2133 10.1143/JJAP.26.2127 Open DOISearch in Google Scholar

Ninagawa K, Adachi K, Uchimura N, Yamamoto I, Wada T, Yamashita Y, Takashima I, Sekimoto K and Hasegawa H, 1992. Thermoluminescence dating of calcite shells in the Pectinidae family. Quaternary Science Reviews 11: 121–126, DOI 10.1016/0277-3791(92)90052-A. NinagawaK AdachiK UchimuraN YamamotoI WadaT YamashitaY TakashimaI SekimotoK HasegawaH 1992 Thermoluminescence dating of calcite shells in the Pectinidae family Quaternary Science Reviews 11 121 126 10.1016/0277-3791(92)90052-A Open DOISearch in Google Scholar

Ninagawa K, Takahashi N, Wada T, Yamamoto I, Yamashita N and Yamashita Y, 1988. Thermoluminescence measurements of a calcite shell for dating. Quaternary Science Reviews 7: 367–371, DOI 10.1016/0277-3791(88)90031-5. NinagawaK TakahashiN WadaT YamamotoI YamashitaN YamashitaY 1988 Thermoluminescence measurements of a calcite shell for dating Quaternary Science Reviews 7 367 371 10.1016/0277-3791(88)90031-5 Open DOISearch in Google Scholar

Öztürk MZ, Şener MF and Şahiner E, 2018. Quaternary slip-rates of the Bor segment of Tuzgölü fault zone. Omer Halisdemir University Journal of Engineering Sciences 7(3): 1049–1053 (In Turkish). ÖztürkMZ ŞenerMF ŞahinerE 2018 Quaternary slip-rates of the Bor segment of Tuzgölü fault zone Omer Halisdemir University Journal of Engineering Sciences 7 3 1049 1053 (In Turkish) 10.28948/ngumuh.502085 Search in Google Scholar

Polymeris GS, 2016. Thermally assisted OSL (TA-OSL) from various luminescence phosphors; an overview. Radiation Measurements 90: 145–152, DOI 10.1016/j.radmeas.2016.01.035. PolymerisGS 2016 Thermally assisted OSL (TA-OSL) from various luminescence phosphors; an overview Radiation Measurements 90 145 152 10.1016/j.radmeas.2016.01.035 Open DOISearch in Google Scholar

Polymeris GS, Erginal AE and Kiyak NG, 2012. A comparative morphological, compositional and TL study of Tenedos (Bozcaada) and Şile aeolianites, Turkey. Mediterranean Archaeology & Archaeometry 12(2): 117–131. PolymerisGS ErginalAE KiyakNG 2012 A comparative morphological, compositional and TL study of Tenedos (Bozcaada) and Şile aeolianites, Turkey Mediterranean Archaeology & Archaeometry 12 2 117 131 Search in Google Scholar

Polymeris GS, Kitis G, Kiyak NG, Theodosoglou E, Tsirliganis NC, Ertek A and Erginal AE, 2016. Dating fossil root cast (Black Sea coast, Turkey) using thermoluminescence: Implications for windblown drift of shelf carbonates during MIS 2. Quaternary International 401: 184–193, DOI 10.1016/j.quaint.2015.05.060. PolymerisGS KitisG KiyakNG TheodosoglouE TsirliganisNC ErtekA ErginalAE 2016 Dating fossil root cast (Black Sea coast, Turkey) using thermoluminescence: Implications for windblown drift of shelf carbonates during MIS 2 Quaternary International 401 184 193 10.1016/j.quaint.2015.05.060 Open DOISearch in Google Scholar

Sadek AM, Eissa HM, Basha AM and Kitis G, 2014. Development of the peak fitting and peak shape methods to analyze the thermoluminescence glow-curves generated with exponential heating function. Nuclear Instruments & Methods in Physics Research Section B-Beam Interactions With Materials And Atoms 330: 103–107, DOI 10.1016/j.nimb.2014.04.006. SadekAM EissaHM BashaAM KitisG 2014 Development of the peak fitting and peak shape methods to analyze the thermoluminescence glow-curves generated with exponential heating function Nuclear Instruments & Methods in Physics Research Section B-Beam Interactions With Materials And Atoms 330 103 107 10.1016/j.nimb.2014.04.006 Open DOISearch in Google Scholar

Şahiner E, 2017. Deconvolution analysis of thermoluminescent glow curves in various commercial dosimeters using two different approaches in the framework of the one-trap, one-recombination model. Turkish Journal of Physics 41: 477–490, DOI 10.3906/fiz-1704-25. ŞahinerE 2017 Deconvolution analysis of thermoluminescent glow curves in various commercial dosimeters using two different approaches in the framework of the one-trap, one-recombination model Turkish Journal of Physics 41 477 490 10.3906/fiz-1704-25 Open DOISearch in Google Scholar

Stirling RJ, Duller GAT and Roberts HM, 2014. Developing a single-aliquot protocol for measuring equivalent dose in biogenic carbonates. Radiation Measurements 47: 725–731, DOI 10.1016/j.radmeas.2012.01.010. StirlingRJ DullerGAT RobertsHM 2014 Developing a single-aliquot protocol for measuring equivalent dose in biogenic carbonates Radiation Measurements 47 725 731 10.1016/j.radmeas.2012.01.010 Open DOISearch in Google Scholar

Wagner GA, 1998. Age determination of young rocks and artifacts: physical and chemical clocks in quaternary geology and archaeology. Springer-Verlag, Berlin-Heidelberg. WagnerGA 1998 Age determination of young rocks and artifacts: physical and chemical clocks in quaternary geology and archaeology Springer-Verlag Berlin-Heidelberg 10.1007/978-3-662-03676-1 Search in Google Scholar

Wintle AG, 1977. Thermoluminescence dating of minerals – traps for the unwary. Journal of Electrostatics 3: 281–288, DOI 10.1016/0304-3886(77)90100-0. WintleAG 1977 Thermoluminescence dating of minerals – traps for the unwary Journal of Electrostatics 3 281 288 10.1016/0304-3886(77)90100-0 Open DOISearch in Google Scholar

Wintle AG, 1978. A thermoluminescence dating study of some Quaternary calcite: potential and problems. Canadian Journal of Earth Sciences 15: 1977–1986, DOI 10.1139/e78-208. WintleAG 1978 A thermoluminescence dating study of some Quaternary calcite: potential and problems Canadian Journal of Earth Sciences 15 1977 1986 10.1139/e78-208 Open DOISearch in Google Scholar

eISSN:
1897-1695
Lingua:
Inglese
Frequenza di pubblicazione:
Volume Open
Argomenti della rivista:
Geosciences, other