Method and system for document authenticity verification
View Patent ↗The invention provides a system and method for secure document verification. In the preferred embodiment, embedded information consists of marks embedded in the interior of the document and are comprised of regions that have refractive index modified to carry information. In the preferred embodiment the marks are not discernable by conventional imaging, spectroscopic or optical polarization techniques, but are discernably by interferometric techniques, such as optical coherence tomography. Multiple alternate embodiments are taught.
1. A method of uniquely identifying a document of interest, comprising the steps of:
a) embedding within the subsurface of said document a layer at a predetermined depth, said subsurface layer consisting of a plurality of regions wherein said regions alternate between regions having a first refractive index and regions having a second refractive index, where said first and said second refractive indexes are not equal to each other;
b) scanning said document using optical coherence tomography; and
c) detecting a layer boundary of said subsurface layer wherein the optical path length to a layer boundary for said regions with a first refractive index have a first value, and wherein the optical path length to a layer boundary of said regions of said second refractive index have a second value, and where said first value does not equal said second value, so that the detected layer boundary constitutes a data pattern that uniquely identifies said document of interest.
2. A method of uniquely identifying a document of interest, said method comprising the steps of:
a) embedding within the sub surface of said document at least two layers each at a predetermined depth,
wherein a first layer is a data layer consisting of a plurality of regions wherein said regions alternate between a first refractive index and a second refractive index—, and wherein a second layer likewise consists of a plurality of regions alternating between said first refractive index and said refractive index and where the location of each said region is complementary to said data layer such that complementary to said data layer so that the data layer and the complementary layer together result in a constant total optical thickness;
b) scanning said document using optical coherence tomography; and
c) measuring an optical path length data signal obtained from said at least two subsurface layers, so that a detected optical path length data pattern from a region between said first layer and said second layer uniquely identifies said document of interest.