Tessera 7. El Altillo mosaic (Rus, Jaén, Spain)

Gray tessera belonging to the mosaic of the villa of El Altillo (Rus, Jaén, Spain). Raman analysis has identified the presence of calcite (CaCO3) and quartz (SiO2). Elemental analysis shows a high concentration of Si (54.68 wt %) and Ca (41.98 wt %). Petrographic study detects abundant quartz in a carbonate matrix with the presence of planktonic foraminifera (globigerinids) and bivalves. Consequently, the raw material used in the manufacture of the tessera was a calcareous sandstone.
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Dimensions

: 1.2 Centimeters

: 1 Centimeters

: 0.8 Centimeters

Materials

Stone

Temporal

: Roman

: 4th century AD

Spatial

  • : El Altillo
  • : Rus, Jaén, Spain
  • : WGS84
 

Copyrights

Creative Commons - Attribution, Non-Commercial, No Derivatives (BY-NC-ND)

References

Serrano, J. L.; Civantos, J. L.;Valcárcel, M.; Palomares, F.; Sánchez, E. (2023): La villa romana El Altillo (Rus, Jaén). Rómula 22, 67-97.

Sánchez, A., Montejo, M., Tuñón, J. et al.(2025): “Raman Analysis of Roman Mosaics From the Upper Guadalquivir Valley (Spain),” Journal of Raman Spectroscopy 56: 1279–1289

Digital Resources

  • Tessera 7
    Creative Commons - Attribution, Non-Commercial, No Derivatives (BY-NC-ND)
    Arquiberlab
    http://creativecommons.org/licenses/by-nc-nd/3.0/
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  • Mosaic detail
    Creative Commons - Attribution, Non-Commercial, No Derivatives (BY-NC-ND)
    Arquiberlab
    http://creativecommons.org/licenses/by-nc-nd/3.0/
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  • Proposed distribution of areas and spaces
    Creative Commons - Attribution, Non-Commercial, No Derivatives (BY-NC-ND)
    Arquiberlab
    http://creativecommons.org/licenses/by-nc-nd/3.0/
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  • Tessera 7. Raman analysis IUIAI-UJA
    Creative Commons - Attribution, Non-Commercial, No Derivatives (BY-NC-ND)
    Arquiberlab
    http://creativecommons.org/licenses/by-nc-nd/3.0/
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  • IUIAI-UJA
    Creative Commons - Attribution, Non-Commercial, No Derivatives (BY-NC-ND)
    Arquiberlab
    http://creativecommons.org/licenses/by-nc-nd/3.0/
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  • Tesela 7. Thin section IUIAI-UJA
    Creative Commons - Attribution, Non-Commercial, No Derivatives (BY-NC-ND)
    Arquiberlab
    http://creativecommons.org/licenses/by-nc-nd/3.0/
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Activities

  • Archaeometric analysis

University Research Center for Iberian Archaeology

Raman Microscopy

Mineralogical analysis

The tessera was sectioned to expose fresh, unaltered cross-section

Renishaw ‘in via’ Qontor Spectrometer coupled with a confocal Leica DM LM microscope (CICT, University of Jaén), equipped with a diode laser (785 nm, 300 mW), DPSS laser (532 nm, 50 mW) and a Peltier-cooled CCD detector, calibrated to the 520.5 cm-1 line of silicon.

X-Ray Fluorescence

Elemental analysis

The tessera was sectioned to expose fresh, unaltered cross-section

An energy dispersive X-ray microfluorescence spectrometer (M4 Tornado, Bruker) (CICT, University of Jaen). This spectrometer is equipped with a microfocus X-ray tube with an Rh anode, a polycapillary lens for X-ray focussing, and a 30-mm2 energy dispersive detector (SDD). The sample chamber incorporates an XYZ motorized stage for sample positioning. A high resolution microscope is used to position the sample on the desired distance from the polycapillary. To increase the sensitivity of the low Z elements, the sample chamber can be brought under vacuum. For the analysis of the samples, a spot size of 25 μm was chosen at an operating X-ray tube voltage of 50 kV and intensity of 600 μA. The tube current was adapted for each sample in order to optimise the detection of X-rays.

Petrographic analysis

Visual characterization (5X handheld magnifying glass) and reaction with HCl to determine its carbonate nature. Preparation of a thin section.

Leica DM4P polarization microscope equipped with a Leica DFC450C camera.

 

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