References
- Adamiec G, Duller GAT, Roberts HM and Wintle AG, 2010. Improving the TT-OSL SAR protocol through source trap characterization. Radiation Measurements 45: 768–777, 10.1016/j.radmeas.2010.03.009.
- 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: 363–370, 10.1093/rpd/ncr315.
- Aitken MJ, 1998. An Introduction to Optical Dating. Oxford University Press, New York.
- Bailey RM, 2000. The slow component of quartz optically stimulated luminescence. Radiation Measurements 32: 233–246, 10.1016/S1350-4487(99)00285-1.
- Benny PG, Gundu Rao TK and Bhatt BC, 2002. The E1/- center and its role in TL sensitization in quartz. Radiation Measurements 35: 369–373, 10.1016/S1350-4487(02)00064-1.
- Bray HE, Bailey RM and Stokes S, 2002. Quantification of cross-irradiation and cross-illumination using a Risø TL/OSL DA-15 reader. Radiation Measurements 35: 275–280, 10.1016/S1350-4487(02)00045-8.
- Bøtter-Jensen L, Duller GAT, Murray AS and Banerjee D, 1999. Blue light emitting diodes for optical stimulation of quartz in retrospective dosimetry and dating. Radiation Protection Dosimetry 84: 335–340.
- Galloway RB, 1994. Comparison of the green- and Infrared-stimulated luminescence of feldspar. Radiation Measurements 23: 617–620, 10.1016/1350-4487(94)90109-0.
- Godfrey-Smith DI, Huntley DJ and Chen WH, 1988. Optical dating studies of quartz and feldspar sediment extracts. Quaternary Science Reviews 7: 373–380, 10.1016/0277-3791(88)90032-7.
- Hernandez M and Mercier N, 2015. Characteristics of the post-blue VSL signal from sedimentary quartz. Radiation Measurements 78: 1–8, 10.1016/j.radmeas.2015.05.001.
- Jain M, Murray AS and Bøtter-Jensen L, 2003. Characterization of blue-light stimulated luminescence components in different quartz samples: implications for dose measurement. Radiation Measurements 37: 441–449, 10.1016/S1350-4487(03)00052-0.
- Jani MG, Bossoli RB and Halliburton LE, 1983a. Further characterization of the E1/- center in crystalline SiO2. Physical Review B 27: 2285–2293, 10.1103/PhysRevB.27.2285.
- Jani MG, Halliburton LE and Kohnke E, 1983b. Point defects in crystalline SiO2: thermally stimulated luminescence above room temperature. Journal of Applied Physics 54: 6321–6328, 10.1063/1.331906.
- Kitis G, Kiyak NG, Polymeris S and Pagonis V, 2010. Investigation of OSL signals from very deep traps in unfired and fired quartz samples. Nuclear Instruments & Methods in Physics Research Section B 268: 592–598, 10.1016/j.nimb.2009.12.006.
- Koul DK and Chougaonkar MP, 2007. Pre-dose phenomenon in the OSL signal of quartz. Radiation Measurements 42: 1265–1272, 10.1016/j.radmeas.2007.04.001.
- Koul DK and Chougaonkar MP, 2011. An attempt to estimate firing temperature using OSL pre-dose sensitization of quartz. Geochronometeria 38: 1–6, 10.2478/s13386-011-0034-5.
- Koul DK, Patil PG, Oniya E and Polymeris GS, 2014. Investigating the thermally transferred optically stimulated luminescence source trap in fired geological quartz. Radiation Measurements 62: 60–70, 10.1016/j.radmeas.2014.01.014.
- Koul DK, Soni A, Polymeris GS and Kulkarni M, 2016. Impact of firing on the OSL luminescence properties of natural quartz: A case study. Nuclear Instruments & Methods in Physics Research Section B 270: 86–93, 10.1016/j.nimb.2016.01.018.
- Li SH, 2002. Luminescence sensitivity changes of quartz by bleaching, annealing and UV exposure. Radiation Effects and Defects in Solids 157: 357–364, 10.1080/1042015021000005225.
- Murray AS and Wintle AG, 2000. Luminescence dating of quartz using an improved single-aliquot regenerative-dose protocol. Radiation Measurements 32: 57–73, 10.1016/S1350-4487(99)00253-X.
- Polymeris G, Kitis G and Pagonis V, 2006. The effects of annealing and irradiation on the sensitivity and superlinearity properties of the 110°C thermoluminescence peak of quartz. Radiation Measurements 41: 554–564, 10.1016/j.radmeas.2006.03.006.
- Polymeris GS, Afouxenidis D, Tsirliganis NC and Kitis G, 2009. The TL and room temperature OSL properties of the glow peak at 110°C in natural milky quartz: a case study. Radiation Measurements 44: 23–31, 10.1016/j.radmeas.2008.10.007.
- Polymeris G, Sahiner E, Meric N and Kitis G, 2015. Experimental features of natural thermally assisted OSL (NTA-OSL) signal in various quartz samples; preliminary results. Nuclear Instruments and Methods in Physics Research Section B 349: 24–30, 10.1016/j.nimb.2015.01.079.
- Sankaran AV, Nambi KSV and Sunta CM, 1983. Progress of thermos luminescence research on geological materials. Proceedings of the Indian National Science Academy 49: 18–112.
- Schilles T, Poolton NRJ, Bulur E, Botter-Jensen L, Murray AS, Smith GM, Riedi PC and Wagner GA, 2001. A multi-spectroscopic study of luminescence sensitivity changes in natural quartz induced by high temperature annealing. Journal of Physics D-Applied Physics 34: 722–731, 10.1088/0022-3727/34/5/310.
- Singarayer JS and Bailey RM, 2003. Further investigations of the quartz optically stimulated luminescence components using linear modulation. Radiation Measurements 37: 451–458, 10.1016/S1350-4487(03)00062-3.
- Smith BW, Aitken MJ, Rhodes EJ, Robinson PD and Geldard DM, 1986. Optical dating: methodological aspects. Radiation Protection Dosimetry 17: 229–233.
- Smith BW and Rhodes EJ, 1994. Charge movements in quartz and their relevance to optical dating. Radiation Measurements 23: 329–333, 10.1016/1350-4487(94)90060-4.
- Wintle AG, 1975. Thermal quenching of thermoluminescence in quartz. Geophysical Journal of the Royal Astronomical Society 41: 107–113, 10.1111/j.1365-246X.1975.tb05487.x.
- Wintle AG and Murray AS, 1997. The relationship between quartz thermoluminescence, photo-transferred thermoluminescence and optically stimulated luminescence. Radiation Measurements 27: 611–624, 10.1016/S1350-4487(97)00018-8.
- Wintle AG and Murray AS, 2006. A review of quartz optically stimulated luminescence characteristics and their relevance in single-aliquot regeneration dating protocols. Radiation Measurements 41: 369–391, 10.1016/j.radmeas.2005.11.001.
- Zimmerman J, 1971. Radiation-induced increase of 100 C thermoluminescence sensitivity of fired quartz. Journal of Physics Part C Solid State Physics 4: 3265–3276, 10.1088/0022-3719/4/18/032.