[1] James, L., Byzantine glass mosaic tesserae: some material considerations. Byz. Mod. Greek Stud. 30 (2006), 29–47.
[2] Colomban, Ph., March, G., Mazerolles, L., Karmous, T., Ayed, N., Ennabli, A., Slim, H., Raman identification of materials used for jewelry and mosaic in ifriqiya. J. Raman Spectrosc. 34 (2003), 205–215.
[3] Ricciardi, P., Colomban, Ph., Tournié, A., Macchiarola, M., Ayed, N., A non-invasive study of Roman Age mosaic glass tesserae by means of Raman spectroscopy. J. Archaeol. Sci. 36 (2009), 2551–2559.
[4] Schibille, N., Degryse, P., Corremans, M., Specht, Ch., Chemical characterisation of glass mosaic tesserae from sixth-century Sagalassos (south-west Turkey): chronology and production techniques. J. Archaeol. Sci. 39 (2012), 1480–1492.
[5] L. James, C. Entwistle (Eds.), New Light on Old Glass: Byzantine Glass and Mosaics, Proceedings of the Conference (London, 27–29 May 2010), British Museum, London, 2013.
[6] Neri, E., Verità, M., Glass and metal analyses of gold leaf tesserae from 1st to 9th century mosaics. a contribution to technological and chronological knowledge. J. Archaeol. Sci. 40 (2013), 4596–4606.
[7] Basso, E., Invernizzi, C., Malagodi, M., La Russa, M.F., Bersani, D., Lottici, P.P., Characterization of colorants and opacifiers in Roman glass mosaic tesserae through spectroscopic and spectrometric techniques. J. Raman Spectrosc. 45 (2014), 238–245.
[8] Nenna, M.D., Production et commerce du verre à l’époque impériale: nouvelles découvertes et problématiques. Facta 1 (2007), 125–147.
[9] Freestone, I.C., The provenance of ancient glass through compositional analysis. Mater. Res. Soc. Symp. Proc. 852 (2005), 1–14.
[10] Henderson, J., Ancient Glass: An Interdisciplinary Exploration. 2013, Cambridge University Press, Cambridge.
[11] Degryse, P., Glass Making in the Graeco-Roman World, 2014, Leuven University Press, Leuven.
[12] Silvestri, A., Tonietto, S., Molin, G., The palaeo-Christian glass mosaic of St. Prosdocimus (Padova, Italy): Archaeometric characterisation of ‘gold’ tesserae. J. Archaeol. Sci. 38 (2011), 3402–3414.
[13] Freestone, I.C., Chemical analysis of raw glass fragments. Hurst, H.R., (eds.) Excavation at Carthage, vol. 2, 1993, Oxford University Press, Oxford, 290.
[14] DeLaine, J., The Baths of Caracalla. J. Roman Archaeol., 1997 (Supplementary Series 25).
[15] Wypyski, M.T., Technical analysis of glass mosaic tesserae from amorium. DOP 59 (2005), 183–192.
[16] Greenhalgh, M., The Survival of Roman Antiquities in the Middle Ages, 1989, Duckworth, London.
[17] A. Cutler, The industries of art, in: A.E. Laiou (Ed.), The economic history of Byzantium from the Seventh Through the Fifteenth Century, vol. 2, Dumbarton Oaks, Washington, 2002, pp. 555–587.
[18] V. Francois, J.M. Spieser, Pottery and glass in Byzantium, in: A.E. Laiou (Ed.), The economic history of Byzantium from the Seventh through the Fifteenth Century, vol. 2, Dumbarton Oaks, Washington, 2002, pp. 593–610.
[19] Schibille, N., Freestone, I.C., Composition, production and procurement of glass at san vincenzo al volturno: an early medieval monastic complex in Southern Italy. PLoS One, 8(10), 2013, e76479.
[20] Neri, E., Utilisation et production de tesselles de mosaïque à l'époque romane d'après Théophile, in Gestes et techniques de l'artiste à l'époque romane. Cah. De. Cuxà 43 (2012), 31–42.
[21] Biron, I., Chopinet, M.H., Colouring, decolouring and opacifying of glass. Janssens, K., (eds.) Modern Methods for Analysing Archeological and Historical Glass, 2013, Wiley, New York, 49–65.
[22] Colomban, Ph., The use of metal nanoparticles to produce yellow, red and iridescent colour, from bronze age to present times in lustre pottery and glass: solid state chemistry, spectroscopy and nanostructure. J. Nano Res. 8 (2009), 109–132.
[23] Colomban, Ph., Schreiber, H.D., Raman signature modification induced by copper nanoparticles in silicate glass. J. Raman Spectrosc. 36 (2005), 884–890.
[24] Colomban, Ph., Tournié, A., Ricciardi, P., Raman spectroscopy of copper nanoparticle-containing glass matrices: ancient red stained-glass windows. J. Raman Spectrosc. 40 (2009), 1949–1955.
[25] Rubio, F., Perez-Villar, S., Garrido, M.A., Rubio, J., Oteo, J.L., Application of gradient and confocal Raman spectroscopy to analyze silver nanoparticle diffusion in medieval glasses. J. Nano Res. 8 (2009), 89–97.
[26] Verità, M., Santopadre, P., Analysis of gold-colored ruby glass tesserae in Roman church mosaics of the fourth to 12th centuries. J. Glass Stud. 52 (2010), 11–24.
[27] Colomban, Ph., Milande, V., On Site analysis of the earliest known Meissen Porcelain and Stoneware. J. Raman Spectrosc. 37 (2006), 606–613.
[28] Turner, W.E.S., Rooksby, H.P., A study of opalising agents in ancient opal glasses throughout three thousand four hundred years. Glastech. Ber. 32K:VII (1959), 17–28.
[29] Lahlil, S., Biron, I., Galoisy, L., Morin, G., Rediscovering ancient glass technologies through the examination of opacifier crystals. Appl. Phys. A 92 (2008), 109–116.
[30] Lahlil, S., Biron, I., Cotte, M., Susini, J., New insight on the in situ crystallization of calcium antimonate opacified glass during the Roman period. Appl. Phys. A 100 (2010), 683–692.
[31] Uboldi, M., Verità, M., Scientific analyses of glasses from late Antique to early medieval archaeological sites in northern Italy. J. Glass Stud. 45 (2003), 115–137.
[32] Tite, M., Pradell, T., Shortland, A., Discovery, production an use of tin-based opacifiers in glasses, enamels and glazes from the late iron age onwards: a reassessment. Archaeometry 50 (2008), 67–84.
[33] B. Gratuze, Les verres mosaïqués du secteur de la maison de la Rotonde. Composition chimique et chrono-typologie, in: Ch. Balmelle, A. Bourgeois, H. Broise, J.P. Darmon, M. Ennaifer (Eds.), Carthage, colline de l'Odéon, maison de la Rotonde et Cryptoportique, Ecole Française de Rome, Rome, 2012, pp. 797–801.
[34] A.E. Werner, M. Bismon, Technical report on the glass gaming-pieces, in: I.M. Stead, A La Tène III (burial at Welwyn Garden City, Archaeologia) 101 (1967) pp. 16–17.
[35] C. Lahanier, Etudes des tesselles de mosaïques et de verre à vitre syriens, in: M.T. Canivet, P. Canivet (Eds.), Huarte, sanctuaire chrétien d'Apamène (IVe-VIe s.), Bibliothèque archéologique et historique 122 (1987) pp. 331–346.
[36] Newton, R., Davison, D., Conservation of Glass, 1999, Routledge, Oxford.
[37] F. Marii, T. Rehren, Archaeological Coloured Glass Cakes and Tesserae from the Petra Church, in: Annales du 17e congrès de l'Association Internationale pour l'Histoire du Verre (Anvers, septembre 2006), Bruxelles, 2009, pp. 295–300.
[38] M. Verità, Glass mosaic tesserae of the Neonian Baptistry in Ravenna: na(ture, origin, weathering causes and pro)cesses, in: C. Fiori, M. Vandini (Eds.), Ravenna Musiva, Ante Quem, Ravenna, 2010, pp. 89–103.
[39] M. Verità, Indagini analitiche degli smalti dell'altare di Sant'Ambrogio a Milano: transizione verso una nuova tecnologia vetraria nel IX secolo, in: M. Vandini (Ed.), Riflessioni e trasparenze: diagnosi e conservazione di opere e manufatti vetrosi, Patron, Bologna, 2010, pp. 11–24.
[40] Silvestri, A., Tonietto, S., Molin, G.M., Guerriero, P., The palaeo-Christian glass mosaic of St. Prosdocimus (Padova, Italy): archaeometric characterisation of tesserae with antimony- or phosphorus-based opacifiers. J. Archaeol. Sci. 39 (2012), 2177–2190.
[41] Verità, M., Rapisarda, S., Studio analitico di materiali musivi vitrei del XII-XIII secolo dalla Basilica di Monreale a Palermo. Riv. Stn. Sper. Del. Vetro 2 (2008), 15–29.
[42] Arletti, R., Fiori, C., Vandini, M., A study of glass tesserae from mosaics in the monasteries of Daphni and Hosios Loukas (Greece). Archaeometry 52 (2010), 796–815.
[43] M. Verità, S. Zecchin, Scientific investigations of byzantine glass tesserae from the mosaics on the south chapel of Torcello's Basilica, Venice, in: Annales du 18e Congrès de l'Association Internationale pour l'Histoire du Verre (Thessaloniki, 20–25 septembre 2009), Thessaloniki, 2012, pp. 315–320.
[44] Neri, E., Lusuardi Siena, S., Greppi, P., Il problema della cronologia del cantiere di S. Lorenzo a Milano. Vecchi e nuovi dati a confronto. Stud. Ambrosia. 8 (2015), 115–164.
[45] C. Boschetti, Alcune osservazioni sui mosaici e sulle pitture dell'anfiteatro di Durazzo, in: S. Santoro, A. Hoti, B. Sassi (Eds.), L'anfiteatro di Durazzo. Studi e Scavi 2004-2005, Annuario della Scuola Archeologica Italiana di Atene 83 (III, 5), SAIA, Athens, pp. 789–806.
[46] Pace, V., Mosaici e pittura in Albania (VI-XIV secolo). Stato degli studi e prospettive di ricercaMosaici e pittura in Albania (VI-XIV secolo). Antich. Altoadriatiche 53 (2007), 93–128.
[47] F. D'Andria, Il santuario e la tomba dell'apostolo Filippo a Hierapolis di Frigia, Rendiconti della Pontificia Accademia Romana di Archeologia LXXXIV, 2013, pp. 1–52.
[48] Colomban, Ph., The on-site/remote Raman analysis with portable instruments: a review of drawbacks and success in Cultural Heritage studies and other associated fields. J. Raman Spectrosc. 43 (2012), 1529–1535.
[49] Colomban, Ph., The destructive/non-destructive identification of enamels, pottery, glass artifacts and associated pigments. A Brief Overview, Arts 2 (2013), 77–110.
[50] Colomban, Ph., Sagon, G., Faurel, X., Differentiation of antiqueue ceramics from the Raman spectre of their coloured glazes and paintings. J. Raman Spectrosc. 32 (2001), 351–360.
[51] Colomban, Ph., Polymerisation degree and raman identification of ancient glasses used for jewellery, ceramics enamels and mosaics. J. Non-Cryst. Solids 323 (2003), 180–187.
[52] Colomban, Ph., Tournié, A., On-site Raman identification and dating of ancient/modern stained glasses at the Sainte-Chapelle, Paris. J. Cult. Herit. 8 (2007), 242–256.
[53] Colomban, Ph., Prinsloo, L.C., Optical spectroscopy of silicates and glasses. Yarwood, J., Douthwaite, R., Duckett, S., (eds.) Spectroscopic Properties of Inorganic and Organometallic Compounds: Techniques, Materials and Applications, 40, 2009, RSC Publishing, London, 128–149.
[54] Baert, K., Meulebroeck, W., Wouters, H., Ceglia, A., Nys, K., Thienpont, H., Terryn, H., Raman spectroscopy as a rapid screening method for ancient plain window glass. J. Raman Spectrosc. 42 (2011), 1055–1061.
[55] Caggiani, M.C., Valotteau, C., Colomban, Ph., Inside the glassmaker technology: search of Raman criteria to discriminate between Emile Gallé and Philippe-Joseph Brocard enamels and pigments signatures. J. Raman Spectrosc. 45 (2014), 456–464.
[56] Colomban, Ph., Treppoz, F., Identification and differentiation of ancient and modern European Porcelains by Raman Macro- and microspectroscopy. J. Raman Spectrosc. 32 (2001), 93–102.
[57] Galli, S., Mastelloni, M., Ponterio, R., Sabatino, G., Triscari, M., Raman and scanning electron microscopy and energy-dispersive X-ray techniques for the characterization of colouring and opaquening agents in Roman mosaic glass tesserae. J. Raman Spectrosc. 35 (2004), 622–627.
[58] Gedzevičiūtė, V., Welter, N., Schüssler, U., Weiss, C., Chemical composition and colouring agents of Roman mosaic and millefiori glass, studied by electron microprobe analysis and Raman microspectroscopy. Archeol. Anthropol. Sci, 1, 2009, 15–29.
[59] Vicenzi, E.P., Eggins, S., Logan, A., Wysoczanski, R., Microbeam characterization of Corning archaeological references glasses. New additions to the Smithsonian microbeam standard collection. J. Res. Natl. Inst. Stand. Technol. 107 (2002), 719–727.
[60] Henderson, J., Chenery, S., Kröger, J., Faber, E.W., Glass provenance along the Silk Road: The use of trace element analysis. Gan, F., Li, Q., Henderson, J., (eds.) Recent Advances in the Scientific Research on Ancient Glass and Glaze, Series on Archaeology and History of Science in China, vol. 2, 2016, World Scientific, Singapore, 17–42.
[61] R.H. Brill, Chemical analyses of early glasses: (Volume 1) (tables) and 2 (catalogue), Corning Museum of Glass, Corning, 1999.
[62] Colomban, Ph., On-site identification and dating of ancient glasses: a review of procedures and tools. J. Cult. Herit. 9:Suppl (2008), e55–e60.
[63] Andreescu Treadgold, I., Henderson, J., Roe, M., Glass from the Mosaics of the West Wall of Torcello's Basilica. Arte Medievale 2 (2006), 87–140.
[64] Rehren, T., Connolly, P., Schibille, N., Schwarzer, H., Changes in glass consumption in Pergamon (Turkey) from Hellenistic to Late Byzantine and Islamic times. J. Archaeol. Sci. 55 (2015), 266–279.
[65] McMillan, P., Piriou, B., The structural and vibrational spectra of crystals and glasses in the silica-alumina system. J. Non-Cryst. Solids 53 (1982), 279–298.
[66] Colomban, Ph., Bellot-Gurlet, L., Tournié, A., Raman identification of glassy silicates used in ceramics, glass and jewellery: a tentative differentiation guide. J. Raman Spectrosc. 37 (2006), 841–852.
[67] S. Lahlil I. Biron L. Galoisy G. Morin, Technological processes to produce antimonate opacified glass throughout history, Annales du 17e congrès de l'Association Internationale pour l'Histoire du Verre (Anvers, septembre 2006), Bruxelles, 2009, pp. 571-578.
[68] Bouchard, M., Smith, D.C., Catalogue of 45 reference Raman spectra of minerals concerning research in art history or archaeology, especially on corroded metals and coloured glass. Spectrochim. Acta A 59 (2003), 2247–2266.
[69] Pereira, M., de Lacerda-Aroso, T., Gomes, M.J.M., Mata, A., Alves, L.C., Colomban, Ph., Ancient Portuguese ceramic wall tiles (“Azulejos”): characterization of the glaze and ceramic pigments. J. Nano Res. 8 (2009), 79–88.
[70] Kirmizi, B., Colomban, Ph., Quette, B., On-site analysis of Chinese Cloisonné enamels from fifteenth to nineteenth centuries. J. Raman Spectrosc. 41 (2010), 780–790.
[71] C. Pelosi, U. Santamaria, G. Agresti, E. Mattei and A. De Santis, Production and characterization of lead, tin and antimony based yellow pigments, in: J.H. Townsend, L. Toniolo, F. Cappitelli (Eds.), Proceedings of the International Conference Conservation Science 2007 (Milan 10-11 May 2007), Archetype Publication, London, 2008, pp. 187–188.
[72] Pelosi, C., Agresti, G., Santamaria, U., Mattei, E., Artificial yellow pigments: production and characterization through spectroscopic methods of analysis, e-Preservation. Science 7 (2010), 108–115.
[73] Colomban, Ph., Tournié, A., Meynard, P., Maucuer, M., On-site Raman and XRF analysis of Japanese/Chinese Bronze/Brass Patina – The search of specific Raman signatures. J. Raman Spectrosc. 43:6 (2012), 799–808.
[74] S. Paynter, T. Kearns, West Clacton Reservoir, Great Bentley, Essex. Analysis of glass tesserae. Research Department, Report Series, Portsmouth, 2011.
[75] Welter, N., Schüssler, U., Kiefer, W., Characterization of inorganic pigments in ancient glass beads by merans of Raman microspectroscopy, microprobe analysis and X-ray diffractometry. J. Raman Spectrosc. 3838 (2007), 113–121.
[76] Sciau, Ph., Noé, L., Colomban, Ph., Metal nanoparticles in contemporary potters’ master pieces: Lustre and red “pigeon blood” pottery: Models to understand the ancient technology. Ceram. Int. 42 (2016), 15349–15357.
[77] Molina, G., Odin, G.P., Pradell, T., Tite, M., Production technology and replication of lead antimonate yellow glass from New Kingdom Egypt and the Roman Empire. J. Archaeol. Sci. 41 (2014), 171–184.
[78] Moretti, C., Hreglich, S., Opacification and colouring of glass by the use of the “Anime”. Glass Technol. 25:6 (1984), 277–282.
[79] L. Zecchin, Il ricettario Darduin: Un codice vetrario del Seicento trascritto e commentato, Arsenale, Venice, 1986.
[80] Kirmizi, B., Göktürk, E.H., Colomban, Ph., Colouring agents in the pottery glazes of Western Anatolia: New evidence for the use of Naples Yellow pigment variations during the late Byzantine period. Archaeometry 57 (2015), 476–496.
[81] M. Verità, Analisi delle tessere musive, in: V. Tiberia (Ed.), I mosaici del XII secolo e di Pietro Cavallini in Santa Maria in Trastevere, Ediart, Todi, 1996, pp. 209–212.
[82] M. Verità, M. Vallotto, Analisi delle tessere musive, in: V. Tiberia (Ed.), Il mosaico di Santa Pudenziana a Roma. Il restauro, Ediart, Todi, 2003, pp. 178–199.
[83] M. Verità, P. Santopadre, Le analisi delle tessere musive vitree: esempi d'applicazione nelle indagini preliminari al restauro del mosaico absidale della Cappella dei Santi Primo e Feliciano, in: G. Basile, A. Pandolfi, B. Mazzone, C. Prosperi Porta, M.S. D'Urbano, P. Bianchetti, B. Profilo, P. Santopadre, M. Verità, E. Anselmi, C. D'Angelo, C. Mora, Il restauro del mosaico di S. Stefano Rotondo a Roma, Arte Medievale” 1 (1993) pp. 197–228.
[84] M. Verità, P. Santopadre, Mosaico absidale della basilica di Santa Cecilia a Roma. Studio delle tessere vitree, in: D. Radeglia (Ed.), Restauri a Santa Cecilia. 25 anni di interventi dell'Istituto Superiore per la Conservazione ed il Restauro, Edifir, Florence, 2009, pp. 263–272.
[85] Croveri, P., Fragalà, I., Ciliberto, E., Analysis of glass tesserae from the mosaics of Villa del Casale, near Piazza Armerina: Chemical composition, state of preservation and production technology. Appl. Phys. A 100:3 (2010), 927–935.
[86] C. Fiori, M. Vandini, M. Macchiarola, G. Ercolani, Studio di vetri musivi di epoca bizantina (V-VI sec.) provenienti da scavi della Capitanata (Foggia), in: C. Piccioli, F. Sogliani (Eds.), Il vetro in Italia meridionale e insulare. Atti del I convegno multidisciplinare (Napoli 5-7 marzo 1998), De Frede, Napoli, 1999, pp. 431–440.
[87] Gliozzo, E., Santagostino Barbone, A., D'Acapito, F., Turchiano, M., Memmi Turbanti, I., Volpe, G., The sectilia panels of Faragola (Ascoli Satriano, Southern Italy): a multi-analytical study of the green, marbled, blue and blackish glass slabs. Archaeometry 50:3 (2009), 389–415.
[88] C. Fiori, M. Vandini, V. Mazzotti, I colori del vetro antico. Il vetro musivo bizantino, Il Prato, Vicenza, 2009.
[89] C. Pion B. Gratuze A. De Poorter, Made in India : des perles en verre provenant d'Asie du Sud en Gaule mérovingienne, Bulletin de liaison de l'Association française d'archéologie mérovingienne 37, 2013, pp. 69–71.
[90] Fiori, C., Vandini, M., Ercolani, G., Mingazzini, C., I vetri del mosaico absidale di S. Ambrogio a Milano, Rivista della Stazione. Sper. Del. Vetro 29 (1999), 21–29.