I. Borgia, R. Fantoni, C. Flamini, T. M. Di-palma, A. G. Guidoni et al., Luminescence from pigments and resins for oil paintings induced by laser excitation, Appl. Surf. Sci, pp.95-100, 1998.

A. Nevin, S. Cather, D. Anglos, and C. Fotakis, Analysis of protein-based binding media found in paintings using laser induced fluorescence spectroscopy, Anal. Chim. Acta, pp.341-346, 2006.

A. Nevin and D. Anglos, Assisted Interpretation of Laser-Induced Fluorescence Spectra of Egg-Based Binding Media Using Total Emission Fluorescence Spectroscopy, Laser Chem, pp.1-5, 2006.

D. Anglos, M. Solomidou, I. Zergioti, V. Zafiropulos, T. G. Papazoglou et al., Laser-Induced Fluorescence in Artwork Diagnostics: An Application in Pigment Analysis, Appl. Spectrosc, vol.50, pp.1331-1334, 1996.

M. Marinelli, A. Pasqualucci, M. Romani, and G. Verona-rinati, Time resolved laser induced fluorescence for characterization of binders in contemporary artworks, J. Cult. Herit, vol.23, pp.98-105, 2017.

L. Fiorani, L. Caneve, F. Colao, R. Fantoni, P. Ortiz et al., Real-Time Diagnosis of Historical Artworks by Laser-Induced Fluorescence, Adv. Mater. Res, pp.253-258, 2010.

D. Comelli, A. Nevin, G. Valentini, I. Osticioli, E. M. Castellucci et al., Insights into Masolino's wall paintings in Castiglione Olona: Advanced reflectance and fluorescence imaging analysis, J. Cult. Herit, vol.12, pp.11-18, 2011.

D. Comelli, C. D'andrea, G. Valentini, R. Cubeddu, C. Colombo et al., Fluorescence lifetime imaging and spectroscopy as tools for nondestructive analysis of works of art, Appl. Opt, vol.43, pp.2175-2183, 2004.

F. Colao, R. Fantoni, L. Fiorani, and A. Palucci, Dispositivo portatile a fluorescenza per la scansione spaziale di superfici, in particolare nell'ambito dei beni culturali, 2007.

C. Domingo, D. Silva, J. V. García-ramos, M. Castillejo, M. Martín et al., Spectroscopic Analysis of Pigments and Binding Media of Polychromes by the Combination of Optical Laser-Based and Vibrational Techniques, Appl. Spectrosc, vol.55, pp.992-998, 2001.

M. Oujja, C. Vázquez-calvo, M. Sanz, M. Á. De-buergo, R. Fort et al., Laser-induced fluorescence and FT-Raman spectroscopy for characterizing patinas on stone substrates, Anal. Bioanal. Chem, vol.402, pp.1433-1441, 2012.

D. Syvilay, X. S. Bai, N. Wilkie-chancellier, A. Texier, L. Martinez et al., Laser-induced emission, fluorescence and Raman hybrid setup: A versatile instrument to analyze materials from cultural heritage, Spectrochim. Acta Part B At. Spectrosc, vol.140, pp.44-53, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01672146

M. Eveno, B. Moignard, and J. Castaing, Portable apparatus for in situ x-ray diffraction and fluorescence analyses of artworks, Microsc. Microanal, vol.17, pp.667-673, 2011.

A. Gianoncelli, J. Castaing, L. Ortega, E. Dooryhée, J. Salomon et al., A portable instrument for in situ determination of the chemical and phase compositions of cultural heritage objects, X-ray Spectrom, vol.37, pp.418-423, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00264227

M. Ferrett and . X-ray, Fluorescence Applications for the Study and Conservation of Cultural Heritage. In Radiation in Art and Archeometry, pp.285-296, 2000.

G. Artioli, Science for the cultural heritage: The contribution of X-ray diffraction, Rend. Lincei, vol.24, pp.55-62, 2013.

L. Lutterotti, F. Dell'amore, D. E. Angelucci, F. Carrer, and S. Gialanella, Combined X-ray diffraction and fluorescence analysis in the cultural heritage field, Microchem. J, vol.126, pp.423-430, 2016.

A. Mendoza-cuevas, F. Bernardini, A. Gianoncelli, and C. Tuniz, Energy dispersive X-ray diffraction and fluorescence portable system for cultural heritage applications. X-ray Spectrom, vol.44, pp.105-115, 2015.

M. Uda, In situ characterization of ancient plaster and pigments on tomb walls in Egypt using energy dispersive X-ray diffraction and fluorescence, Nucl. Instrum. Methods Phys. Res. Sect. B Beam Interact. Mater. Atoms, vol.226, pp.75-82, 2004.

L. Van-de-voorde, J. Van-pevenage, K. De-langhe, R. De-wolf, B. Vekemans et al., Non-destructive in situ study of "mad Meg" by Pieter Bruegel the Elder using mobile X-ray fluorescence, X-ray diffraction and Raman spectrometers, Spectrochim. Acta Part B At. Spectrosc, vol.97, pp.1-6, 2014.

M. A. Gómez-morón, P. Ortiz, J. M. Martín-ramírez, R. Ortiz, and J. Castaing, A new insight into the vaults of the kings in the Alhambra (Granada, Spain) by combination of portable XRD and XRF, Microchem. J, vol.125, pp.260-265, 2016.

G. Chiari, P. Sarrazin, and A. Heginbotham, Non-conventional applications of a noninvasive portable X-ray diffraction/fluorescence instrument, Appl. Phys. A Mater. Sci. Process, vol.122, p.990, 2016.

P. Del-campo, L. Montero-moreno, A. González-gonzález, M. Ojeda-calvo, R. Villanueva-romero et al., , 1575.

C. Rubio, L. Pérez-del-campo, A. Montero-moreno, and M. González-gonzález, Memoria Final de Intervención Cristo de la Expiración, 1575.

. Aenor-une-en-16085, Conservation of Cultural Property. Methodology for Sampling from Materials of Cultural Property. General Rules, 2014.

D. Lognoli, G. Cecchi, I. Mochi, L. Pantani, V. Raimondi et al., Fluorescence lidar imaging of the cathedral and baptistery of Parma, Appl. Phys. B Lasers Opt, vol.76, pp.457-465, 2003.

F. Colao, L. Caneve, R. Fantoni, L. Fiorani, A. Palucci et al., Scanning hyperspectral lidar fluorosensor for fresco diagnostics in laboratory and field campaigns, Proceedings of the International Conference LACONA 7, pp.149-155, 2008.

F. Colao, R. Fantoni, L. Fiorani, and A. Palucci, Application of a scanning hyperspectral lidar fluorosensor to fresco diagnostics during the CULTURE, Bucovina. Rev. Monum. Istor./Rev. Hist. Monum, pp.53-61, 2000.

F. Colao, L. Caneve, L. Fiorani, A. Palucci, R. Fantoni et al., Report on Lif Measurements in Seville. Part, vol.1, pp.1-30, 2012.

F. Colao, L. Caneve, L. Fiorani, A. Palucci, R. Fantoni et al., Report on LIF measurements in Seville-Part, vol.2, pp.1-29, 2012.

L. Caneve, F. Colao, R. Fantoni, L. Fiorani, and L. Fornarini, Compact scanning hyperspectral lidar fluorosensor for the discrimination of varnishes and consolidants, Proceedings of the International Workshop-SMW08, 2008.

L. Fornarini, L. Caneve, F. Colao, R. Fantoni, and L. Fiorani, Laser induced fluorescence analysis of acrylic resins used in conservation of cultural heritage, Proceedings of the OSAV'2008, 2nd Int. Topical Meeting on Optical Sensing and Artificial Vision, pp.57-63, 2008.

. Access, Research and Technology for the Conservation of the European Cultural Heritage | EU-ARTECH Project | FP6 | CORDIS | European Commission, p.29, 2020.

, Cultural heritage Advanced Research Infrastructures: Synergy for a Multidisciplinary Approach to Conservation/Restoration | CHARISMA Project | FP7 | CORDIS | European Commission, p.29, 2020.

M. A. Gómez-morón, Estudio estratigráfico de capas pictóricas del Cristo de la Expiración, 2012.

D. Kovala-demertzi, L. Papathanasis, R. Mazzeo, M. A. Demertzis, E. A. Varella et al., Pigment identification in a Greek icon by optical microscopy and infrared microspectroscopy, J. Cult. Herit, vol.13, pp.107-113, 2012.

J. Kirby, M. Spring, and C. Higgitt, The Technology of Red Lake Pigment Manufacture: Study of the Dyestuff Substrate, Natl. Gall. Tech. Bull, vol.26, pp.71-87, 2005.

. Vv and . Aa, Artists' Pigments. In A Handbook of Their History and Characteristics

R. L. Feller and . Ed, , vol.1, 2012.

. Vv and . Aa, Artists' Pigments. In A Handbook of Their History and Characteristics

E. W. Fitzhugh and . Ed, , vol.3, 2012.

S. Acquaviva, E. D'anna, M. L. De-giorgi, A. Della-patria, and L. Pezzati, Optical characterization of pigments by reflectance spectroscopy in support of UV laser cleaning treatments, Appl. Phys. A, vol.92, pp.223-227, 2008.

S. Bruni, F. Cariati, L. Consolandi, A. Galli, V. Guglielmi et al., Field and Laboratory Spectroscopic Methods for the Identification of Pigments in a Northern Italian Eleventh Century Fresco Cycle, Appl. Spectrosc, vol.56, pp.827-833, 2002.

C. Fotakis, D. Anglos, and S. Couris, Laser Diagnostics of Painted Artworks: Laser-Induced Breakdown Spectroscopy in Pigment Identification, Appl. Spectrosc, vol.51, pp.1025-1030, 1997.

E. Welcomme, P. Walter, P. Bleuet, J. L. Hodeau, E. Dooryhee et al., Classification of lead white pigments using synchrotron radiation micro X-ray diffraction, Appl. Phys. A Mater. Sci. Process, vol.89, pp.825-832, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00189015

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