M. J. Aitken, P. A. Alcock, G. D. Bussell, and C. J. Shaw, Archaeomagnetic determination of the past geomagnetic intensity using ancient ceramics; allowance for anisotropy, Archaeometry, vol.23, pp.53-64, 1981.

A. Biggin and T. Poidras, First-order symmetry of weak field partial thermoremanence in multidomain ferromagnetic grains. 1. Experimental evidence and physical implications, Earth planet. Sci. Lett, vol.245, pp.438-453, 2006.

A. Biggin, M. Perrin, and M. J. Dekkers, A reliable absolute palaeointensity determination obtained from a non-ideal recorder, Earth planet. Sci. Lett, vol.257, pp.545-563, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00407943

H. Böhnel, A. J. Biggin, D. Walton, J. Shaw, and J. A. Share, Microwave palaeointensities from a recent Mexican lava flow, baked sediments and reheated pottery, Earth planet. Sci. Lett, vol.214, pp.221-236, 2003.

H. M. Böhnel, M. J. Dekkers, L. A. Delgado-argote, and M. N. Gratton, Comparison between the microwave and the multispecimen partial difference pTRM palaeointensity methods, Geophys. J. Int, vol.17, issue.2, pp.383-394, 2009.

M. Calvo, M. Prévot, M. Perrin, and J. Riisager, Investigating the reasons for the failure of palaeointensity experiments: A study on historical lava flows from Mt. Etna, Geophys. J. Int, vol.149, pp.44-63, 2002.

M. Calvo-rathert, Á. Carrancho, F. Stark, J. J. Villalaín, and M. Hill, Are burnt sediments reliable recorders of geomagnetic field strength?, Quat. Res, vol.77, pp.326-330, 2012.

M. Calvo-rathert, J. Morales-contreras, Á. Carrancho, and A. Goguitchaichvili, A comparison of Thellier-type and multispecimen palaeointensity determinations on Pleistocene and historical lava flows from Lanzarote, Geochem. Geophys. Geosyst, vol.17, pp.3638-3654, 2016.

Á. Carrancho, J. Morales, A. Goguitchaichvili, R. Alonso, and M. Terradillos, Thermomagnetic monitoring of lithic clasts burned under controlled temperature and field conditions. Implications for archaeomagnetism, Geofís. Int, vol.53, issue.4, pp.473-490, 2014.

G. Catanzariti, G. Mcintosh, M. Gómez-paccard, V. C. Ruiz-martínez, M. L. Osete et al., Quality control of archaeomagnetic determination using a modern kiln with a complex NRM, Phys. Chem. Earth, vol.33, pp.427-437, 2008.
URL : https://hal.archives-ouvertes.fr/insu-00322681

R. Coe, Paleointensities of the Earth's magnetic field determined from Tertiary and Quaternary rocks, J. geophys. Res, vol.72, pp.3247-3262, 1967.

R. Coe, S. Grommé, and E. A. Mankinen, Geomagnetic paleointensities from radiocarbon-dated lava flows on Hawaii and the question of the Pacific nondipol low, J. geophys. Res, vol.83, pp.1740-1756, 1978.

R. Day, M. Fuller, and V. A. Schmidt, Hysteresis properties of titanomagnetites: Grain-size and compositional dependence, Phys. Earth planet. Inter, vol.13, pp.260-267, 1977.

L. V. De-groot, A. J. Biggin, M. J. Dekkers, C. G. Langereis, and E. Herrero-bervera, Rapid regional perturbations to the recent global geomagnetic decay revealed by a new Hawaiian record, Nat. Commun, vol.4, p.2727, 2013.

L. V. De-groot, High paleointensities for the Canary Islands constrain the Levant geomagnetic high, Earth planet Sci. Lett, vol.419, pp.154-167, 2015.

M. J. Dekkers and H. N. Böhnel, Reliable absolute palaeointensities independent of magnetic domain state, Earth planet. Sci. Lett, vol.284, pp.508-517, 2006.

D. Dunlop, Theory and application of the Day plot (Mrs/Ms versus Hcr/Hc) 1. Theoretical curves and tests using titanomagnetite data, J. geophys. Res, vol.107, issue.B3, 2002.

D. Dunlop, Physical basis of the Thellier-Thellier and related palaeointensity methods, Phys. Earth planet. Inter, vol.187, issue.3, pp.118-138, 2011.

P. Enterpinar, C. G. Langereis, A. J. Biggin, L. V. De-groot, F. Kulakoglu et al., Full vector archaeomagnetic records from Anatolia between 2400 and 1350 BCE: implications for geomagnetic field models and the dating of fires in antiquity, Earth planet. Sci. Lett, vol.434, pp.171-186, 2016.

K. Fabian and R. Leonhardt, Multi-specimen absolute palaeointensity determination: an optimal protocol including pTRM normalization, domain-state correction and alteration test, Earth planet. Sci. Lett, vol.297, pp.84-94, 2010.

G. Fanjat, P. Camps, L. M. Alva-valdivia, M. T. Sougrati, M. Cuevas-garcía et al., First archaeointensity determinations on Maya incense burners from Palenque temples, Mexico: new data to constrain the Mesoamerican secular variation curve, Earth planet. Sci. Lett, vol.363, pp.168-180, 2013.

C. S. Grommé, T. L. Wright, and D. L. Peck, Magnetic properties and oxidation of iron-titanium oxide minerals in Alae and Makaopuhi lava lakes, J. geophys. Res, vol.74, pp.5277-5249, 1969.

N. A. Heckert and J. J. Filliben, NIST Handbook 148: Dataplot Reference Manual, Let Subcommands and Library Functions, National Institute of Standards and Technology Handbook Series, vol.2, 2003.

M. Hill and J. Shaw, Palaeointensity results for historic lavas from Mt. Etna using microwave demagnetization/remagnetization in a modified Thellier-type experiment, Geophys. J. Int, vol.139, issue.2, pp.583-590, 1999.

N. Jordanova, V. Karloukovski, and V. Spataras, Magnetic anisotropy studies on Greek pottery and bricks, Bulg. Geophys. J, vol.21, issue.4, pp.49-58, 1995.

C. Kissel and C. Laj, Improvements in procedure and palaeointensity selection criteria (PICRIT-03) for Thellier and Thellier determinations: application to Hawaiian basaltic long cores, Phys. Earth planet. Inter, vol.147, pp.155-169, 2004.

M. Kono, N. Ueno, and Y. Onuki, Paleointensities of the geomagnetic field obtained from pre-Inca potsherds near Cajamarca, Northern Peru, J. Geomag. Geolelectr, vol.32, pp.1339-1348, 1986.

A. Kosterov and M. Prévot, Possible mechanisms causing failure of Thellier palaeointensity experiments in some basalts, Geophys. J. Int, vol.134, pp.554-572, 1998.

M. Kovacheva, N. Jordanova, and V. Karloukovski, Geomagnetic field variations as determined from Bulgarian archaeomagnetic data. Part II: The last 8000 years, Surv. Geophys, vol.19, pp.431-460, 1996.

S. Y. Lee and H. F. Xu, The role of ?-Fe2O3 nano-mineral and domains in enhancing magnetic coercivity: implications for the natural remanent magnetization, 2018.

L. Goff, M. Gallet, and Y. , A new three-axis vibrating magnetometer for continuous high-temperature magnetization measurements, Earth planet. Sci. Lett, vol.229, pp.31-43, 2004.

R. Leonhardt, Analyzing rock magnetic measurements; The RockMagAnalyzer 1.0 software, Comput. Geosci, vol.32, pp.1420-1431, 2006.

R. Leonhardt, F. Hufenbecher, F. Heider, and H. Soffel, High absolute palaeointensity during a mid-Miocene excursion of the Earth's magnetic field, Earth planet. Sci. Lett, vol.184, issue.1, pp.141-154, 2000.

R. Leonhardt, J. Matzka, and A. Menor, Absolute paleointensities and paleodirections from Fernando de Noronha, Brazil, Phys. Earth planet. Inter, vol.139, pp.285-303, 2003.

R. Leonhardt, C. Heunemann, and D. Krása, Analyzing absolute palaeointensity determinations: acceptance criteria and the software ThellierTool4.0, Geochem. Geophys. Geosyst, vol.5, issue.12, 2004.

J. López-sánchez, G. Mcintosh, M. L. Osete, A. Del-campo, J. J. Villalaín et al., Epsilon iron oxide: origin of the high coercivity stable low Curie temperature magnetic phase found in heated archaeological materials, Geochem. Geophys. Geosyst, vol.18, pp.2646-2656, 2017.

E. Mcclelland-brown, Experiments on TRM intensity dependence on cooling rate, Geophys. Res. Lett, vol.11, pp.205-208, 1984.

G. Mcintosh, M. Kovacheva, G. Catanzariti, M. L. Osete, and L. Casas, Widespread occurrence of a novel high coercivity, thermally stable, low unblocking temperature magnetic phase in heated archaeological material, Geophys. Res. Lett, vol.34, p.21302, 2007.

D. Michalk, A. R. Muxworthy, H. Böhnel, J. Maclennan, and N. R. Nowaczyk, Evaluation of the multispecimen parallel differential pTRM method: a test on historical lavas from Iceland and Mexico, Geophys. J. Int, vol.173, pp.409-420, 2008.

D. M. Michalk, A. J. Biggin, M. F. Knudsen, H. N. Böhnel, N. Nowaczyk et al., Application of the multispecimen palaeointensity method to Pleistocene lava flows from the TransMexican Volcanic Belt, Phys. Earth planet. Inter, vol.179, issue.3-4, pp.13-156, 2010.

M. W. Monster, L. V. De-groot, A. J. Biggin, and M. J. Dekkers, The performance of various palaeointensity techniques as a function of rockmagnetic behaviour-a case study for La Palma, Phys. Earth planet. Inter, vol.242, pp.36-49, 2015.

J. Morales, A. Goguitchaichvili, B. Aguilar-reyes, M. Pineda-durán, P. Camps et al., Are ceramics and bricks reliable absolute geomagnetic intensity carriers?, Phys. Earth planet. Inter, vol.187, pp.310-321, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00644559

G. Muttoni, Wasp-waisted hysteresis loops from a pyrrothite and magnetite-bearing remagnetized Triasssic limestone, Geophys. Res. Lett, vol.22, pp.3167-3170, 1995.

T. Nakajima, M. Torii, N. Natsuhara, K. Yaskawa, M. Takagi et al., Remanent magnetism of the reconstructed ancient kiln, Rock Magn. Paleogeophy, vol.2, pp.28-31, 1974.

G. A. Paterson, L. Tauxe, A. J. Biggin, R. Shaar, and L. C. Jonestrask, On improving the selection of Thellier-type palaeointensity data, Geochem. Geophys. Geosyst, vol.15, pp.1180-1192, 2014.

G. A. Paterson, A. R. Muxworthy, Y. Yamamoto, and Y. Pan, Bulk magnetic domains stability controls paleointensity fidelity, Proc. Natl. Acad. Sci. USA, vol.114, pp.120-133, 2017.

W. Poletti, G. A. Hartmann, M. Hill, A. J. Biggin, and R. I. Trindade, The cooling-rate effect on microwave archeointensity estimates, Geophys. Res. Lett, 2013.

P. Riisager and J. Riisager, Detecting multidomain magnetic grains in Thellier palaeointensity experiments, Phys. Earth planet. Inter, vol.125, pp.111-117, 2001.

A. P. Roberts, Y. L. Cui, and K. L. Verosub, Wasp-waisted hysteresis loops: mineral magnetic characteristics and discrimination of components in mixed magnetic systems, J. geophys. Res, vol.100, issue.B9, pp.909-926, 1995.

A. P. Roberts, L. Tauxe, D. Heslop, X. Zhao, and Z. X. Jiang, A critical appraisal of the "Day Diagram, J. geophys. Res, vol.123, issue.4, pp.2618-2644, 2018.

L. L. Rojas-navarrete, Desarrollo de un vidriado sin plomo de baja temperatura para la alfarería tradicional mexicana, 1995.

E. Schnepp, R. Leonhardt, M. Korte, and J. Klett-drechsel, Validity of archaeomagnetic field recording: an experimental pottery kiln at Coppengrave, Germany, Geophys. J. Int, vol.205, pp.622-635, 2016.

P. Selkin and L. Tauxe, Long-term variations in palaeointensity, Phil. Trans. R. Soc. Lond., A, vol.358, pp.1065-1088, 2000.

F. Stark, J. Cassidy, M. J. Hill, J. Shaw, and P. Sheppard, Establishing a first archaeointensity record for the SW Pacific, Earth planet. Sci. Lett, vol.298, issue.1-2, pp.113-124, 2010.

L. Tauxe, T. A. Mullender, and T. Pick, Potbellies, wasp-waists, and superparamagnetsim in magnetic hysteresis, J. geophys. Res, vol.101, issue.B1, pp.571-583, 1996.

E. Tema, P. Camps, E. Ferrara, and T. Poidras, Directional results and absolute archaeointensity determination by the classical Thellier and the multi-specimen DSC protocols for two kilns excavated at Osterietta, Italy, Stud. Geophys. Geod, vol.59, pp.554-577, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01236052

E. Thébault, International geomagnetic reference field: the 12th generation, Earth Planets Space, vol.67, issue.1, pp.1-19, 2015.

E. Thellier and O. Thellier, Sur l'intensité du champ magnétique terrestre dans le passé historique et géologique, Ann. Geophys, vol.15, pp.285-376, 1959.

J. Veitch, I. Hedley, and J. J. Wagner, An investigation of the intensity of the geomagnetic field during roman times using magnetically anisotropic bricks and tiles, Arch. Sci, vol.37, pp.359-373, 1984.

D. Walton, J. Shaw, J. Share, and J. Hakes, Microwave demagnetization, J. Appl. Phys, vol.71, pp.1549-1551, 1992.

P. J. Wasilewski, Magnetic hysteresis in natural materials, Earth planet. Sci. Lett, vol.20, pp.67-72, 1973.

Y. Yamamoto, M. Torii, and N. Natsuhara, Archeointensity study on baked clay samples taken from the reconstructed ancient kiln: implication for validity of the Tsunakawa-Shaw paleointensity method, Earth Planets Space, vol.67, pp.63-76, 2015.