iPhotoCult aspires to trigger a breakthrough within the CH sector by introducing novel tools and methodologies which will foster a significant step forward in remote or on-site surface and in-depth diagnostic capabilities for monuments and artefacts beyond the current state of the art by:
Expanding the capacity of surface chemical diagnostics in terms of spatial resolution and accuracy by delivering a compact, multi-analytical hybrid tool incorporating a variety of photonic techniques based on Vis, NIR-SWIR, LIF, LIBS, and Raman spectroscopy, set on a tower platform for addressing the dual need for proximal sensing and remote control, encountered when monitoring built heritage, large monuments, or mural paintings, which are difficult to access.
Enabling capabilities for in-depth chemical diagnostics on-site by utilizing Photoacoustic spectroscopy for the first time, opening the capability for obtaining chemical fingerprints for a wide range of materials at unprecedented depths, which can exceed 500μm in opaque media. Furthermore, integrating PA spectroscopy with Non-Linear Optical Microscopy measurements (NLOM) in a single instrument will provide complementary chemical information which is crucial for the study of degradation effects of CH materials.
Enhancing the predictive power for in-depth evolution of structural defects in CH objects by fusing interferometric and thermographic data obtained by a novel tool combining DHSPI with IR thermography.
Customizing optical fiber point sensors for sensitive and multi-functional monitoring of temperature, humidity, strain and impact, utilizing small size, 3D printed transduction architectures attached onto CH objects, that are at high risk (e.g. during transportation), by combining new photonic and material technologies such as those of multi-core optical fibers and micro-metric polymer based porous resonators.
Innovating the data management and visualization associated with the documentation of diagnostic monitoring, conservation, and preservation processes by means of a cloud-based solution dedicated to CH conservators, professionals, and scientists, which will be an asset management platform where analytical maps will be displayed as superimposed layers ready to be explored in 2D and 3D.