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Munich/Mainz, 05.01.2023

Bone fragments discovered inside an 800-year-old piece of jewelry

Neutrons expose the insides of an antique pendant

An interdisciplinary research team led by the Leibniz-Zentrum für Archäologie (LEIZA) has solved the mystery of a gold-plated pendant found in 2008 in a medieval refuse pit in the Old City section of Mainz. Thanks to the non-destructive examinations at the Research Neutron Source Heinz Maier-Leibnitz (FRM II) of the Technical University of Munich (TUM), the researchers localized miniscule bone fragments inside the object, presumably religious relics.

The restored reliquary. Outside it is decorated with images of Jesus and Mary. © Sabine Steidl, LEIZA

The restored reliquary. Outside it is decorated with images of Jesus and Mary. © Sabine Steidl, LEIZA

Five individual packets made of silk and linen were discovered during the evaluation of the tomographies and the Prompt Gamma Activation Analysis (PGAA) with neutrons. Each of the five packets contained bone fragments. “The non-destructive investigation with neutrons was particularly useful, since we couldn’t simply open the pendant and look inside. Centuries of corrosion have heavily damaged the object as a whole and especially the lock mechanism; opening the pendant would have meant destroying it beyond all hope of repair,” says Matthias Heinzel, who works as a restorer at LEIZA.

Dr. Christian Stieghorst (r.) with Dr. Zsolt Revay at the Prompt Gamma Activation Analysis (PGAA) of the Research Neutron Source. © Wenzel Schürmann, TUM

Dr. Christian Stieghorst (r.) with Dr. Zsolt Revay at the Prompt Gamma Activation Analysis (PGAA) of the Research Neutron Source. © Wenzel Schürmann, TUM

During restoration, he discovered a fragment of cord in the pendant’s attachment loop, which on closer examination turned out to be silk. “This is the first proof that this kind of pendant may possibly have been worn around the neck on a silk cord. The neutron tomography at TUM meant we could additionally measure the thread size and the string separations of the textiles inside the pendant,” Heinzel adds.

Neutron tomography shows the interior of the relic pendant. Five relic packages can be seen inside. © Burkhard Schillinger, MLZ

Neutron tomography shows the interior of the relic pendant. Five relic packages can be seen inside. © Burkhard Schillinger, MLZ

Neutron analysis makes organic substances visible
In 500 hours of work, Heinzel meticulously removed corrosion deposits from the find. Initial investigations showed that the approximately 6 cm high, 6 cm wide and 1 cm thick pendant was presumably a storage container for religious relics. Since the organic content of the pendant was not visible in the first x-ray images, investigation was continued using neutrons from the FRM II: Dr. Burkhard Schillinger of the Technical University of Munich (TUM) conducted the neutron tomography using the ANTARES instrument; this rendered the individual textile packages inside containing the bone fragments. The researchers around Dr. Christian Stieghorst (FRM II) and Dr. Eschly Kluge (University of Cologne) determined individual elements of the sample by exciting them to emit characteristic gamma radiation at the PGAA using neutrons.

Dr. Burkhard Schillinger (TUM) at the tomography facility ANTARES, where the relics were visualized with neutrons. © Bernhard Ludewig, FRM II / TUM

Dr. Burkhard Schillinger (TUM) at the tomography facility ANTARES, where the relics were visualized with neutrons. © Bernhard Ludewig, FRM II / TUM

“We can’t say whether or not these bone splinters are from a saint and, if so, which one. Usually relic packages contain a strip of parchment indicating the name of the saint. In this case, however, we unfortunately can’t see one. As an archaeological research institute of the Leibniz Association, we We consider it our duty to preserve the object in its historical authenticity as completely as possible for future generations and to leverage the modern opportunities of non-destructive investigation at the Technical University of Munich,” says Heinzel.

The reliquary in the showcase. © (Foto: Matthias Heinzel, LEIZA)

The reliquary in the showcase. © (Foto: Matthias Heinzel, LEIZA)

Only three other relic containers of this type, referred to as phylacteries, are known to date. The term phylactery is derived from the Greek term for safekeeping or protection. Their owners wore them on their bodies, usually hung around the neck. The exterior of the gold-plated pendant made of copper shows pictures of Jesus, the four Evangelists, Maria and four female saints in enamel. The researchers dated the pendant to the late 12th century and attribute it to a workshop in Hildesheim, Lower Saxony, in Germany. The find is in the possession of the General Directorate for Cultural Inheritance (Generaldirektion kulturelles Erbe or GDKE), at the State Archeological Directorate of Mainz (Direktion Landesarchäologie Mainz) and can be viewed for the time being in the medieval exhibition “AUREA MAGONTIA – Mainz in the Middle Ages” at the Mainz State Museum.

Publication:
Matthias Heinzel, Eschly Kluge, Dorothee Kemper, Burkhard Schillinger, Christian Stieghorst
Discovery of a 12th-Century Enamelled Reliquary Pendant: Elemental Analysis and Content Visualisation Using Prompt Gamma Neutron Activation Analysis and Neutron Tomography
METAL2022 – Proceedings of the interim meeting of the ICOM-CC METALS working group ISBN: 978-2-491997-61-8
Interim meeting of the ICOM-CC METALS working group, Helsinki, Finland, 5 Sep 2022 – 9 Sep 2022 184-191 (2022)

More information:
In addition to the Leibniz-Zentrum für Archäologie and the Heinz Maier-Leibnitz Zentrum at the Technical University of Munich, researchers from the Institute for Nuclear Physics at the University of Cologne and the German Association for the Study of Art were also involved.

Contact:
Dr. Burkhard Schillinger
Technical University of Munich
Research Neutron Source Heinz Maier-Leibnitz (FRM II)
+49 89 289-12185
Burkhard.Schillinger@frm2.tum.de

Leibniz-Zentrum für Archäologie (LEIZA)
Ebru Esmen M.A.
+49 6131-88 85-165
ebru.esmen@leiza.de

MLZ is a cooperation between:

Technische Universität München> Technische Universität MünchenHelmholtz-Zentrum Hereon> Helmholtz-Zentrum Hereon
Forschungszentrum Jülich> Forschungszentrum Jülich

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LENS> LENSERF-AISBL> ERF-AISBL

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