ALROSA has introduced a ground-breaking diamond-tracing technology using non-invasive laser marking.
Unlike traditional laser engraving, this laser marking cannot be destroyed or polished off. It distinguishes ALROSA’s diamonds from other ones, including lab-grown, and allows them to be uniquely identified, providing detailed information about the diamonds’ origins. Consumer surveys in the key diamond markets of the United States and China indicate that diamond tracing is an important factor when making purchases. Tracing involves registering all stages of a diamond’s life from the mine to the jewellery store to guarantee its origin. ALROSA is introducing a new, non-invasive method for physically marking rough and polished diamonds, which has been developed with the help of scientists from the Russian Academy of Sciences, as well as ALROSA’s Research Geological Enterprise (NIGP) and the Yakutniproalmaz Institute.Unique methods
Unlike other tracing methods which are based on keeping a digital copy of the diamond, ALROSA physical nanomarking allows the precious stone to be identified with 100% accuracy. It also differs from other engraving technologies which mark closer to the surface of the diamond. ALROSA’s laser nanomark is imprinted inside the crystal lattice, across the atomic structure of the entire diamond, making it invisible without a scanner. Diamonds with such nanomarkings have been many times successfully certified by the GIA, the industry’s biggest certification centre.The mark is a three-dimensional code linked to the ALROSA Provenance platform. It offers in-depth information about the diamond’s origin and characteristics, as well as a unique identification number, photo, video and details about how it has been cut. Scientists believe that, as the technology evolves, it is likely to become an important way of embedding large amounts of data within the diamond, including media files, images and music.
Oleg Kovalchuk, who supervises the project at the Yakutniproalmaz Institute said, “A nanomark is applied using a laser pulse of a certain wavelength, intensity and duration. This causes nanoregions to form across the entire crystal, which can only be viewed with a scanner created specifically for reading the marks. As such, we have now developed standardised procedures for embedding information and marking a rough diamond with a distributed mark to identify it.” The company is offering its partners marked diamonds and the equipment to read them. Scanning the code takes less than a minute and will eventually be optimised to ensure even greater efficiency.