Hologram
A hologram on an identity document is a diffractive structure — a microscopic surface relief that splits light into its component colors and reconstructs an image that changes as the viewing angle changes. It is not printed and it is not a photograph. In the security industry it belongs to a broader family called DOVIDs: diffractive optically variable image devices.
| Category | DOVID — diffractive optically variable image device |
| Mechanism | Microscopic surface relief that diffracts light |
| Behavior | The image shifts, moves, or changes color with viewing angle |
| Carried on | A security laminate, a patch, or a stripe |
| Requires | A directional light source and a change of angle |
| Related technology | KINEGRAM, a proprietary non-holographic DOVID |
| Reproduced by | Origination equipment and mastering — industrial, not desktop |
Why it cannot be printed
The distinction that matters is between an image made of ink and an image made of structure.
Printing deposits colorant. Whatever a printed image looks like, it looks that way from every angle, because the pigment does not change. A diffractive image has no pigment at all. It is a physical relief pattern, often with features measured in fractions of a micron, and the color you see is light being split by that geometry.
Change your angle and the geometry presents differently, so the color and the image change. That behavior cannot be simulated with ink, which is why the standard counterfeit tell is a shiny printed patch that catches the light but never actually changes.
Producing a genuine diffractive structure requires origination equipment and mastering capability. It is an industrial process with a small number of suppliers, which is precisely the barrier the feature is built on.
Why holograms matter for identity verification — and how they are misused
The hologram is the most recognized security feature in the world and one of the worst-checked. Almost everyone knows to look for one. Very few people know what the correct one looks like for the document in front of them.
That gap is exactly what counterfeiters exploit. A generic holographic patch bought in bulk satisfies the question “does it have a hologram?” while failing the real question, which is whether this specific image, in this specific position, behaves the way that issuer’s design should.
For a verification system the useful checks are behavioral rather than presence-based: does the image change across frames captured at different angles, does it change in the way the reference for this document type says it should, and is the structure continuous or interrupted. Those need motion, which is why identity document verification gets materially more from a live capture than from an uploaded still. The security laminate carrying the hologram is usually assessed at the same time.
Genuine DOVID vs printed imitation
| Genuine | Printed imitation | |
|---|---|---|
| Image source | Diffractive surface relief | Metallic or iridescent ink |
| On tilt | Image changes, moves, or switches | Brightness changes, image does not |
| Color | Spectral, from diffraction | Fixed pigment |
| Under magnification | Fine structure, no dot pattern | Printed dots |
| Equipment to produce | Origination and mastering | A commercial printer |
What a hologram can’t do
Presence proves nothing. Generic holographic patches are widely available. The check is whether it is the correct image for that document, not whether an image exists.
It needs the right light. Diffuse or flat lighting produces little or no effect. Under a soft office light a genuine hologram can look dead.
A single photograph cannot assess it. The defining property is change across angles, and one frame has one angle.
It says nothing about the data. A genuine hologram sits happily on a document whose printed values have been altered — the pattern that recurs across this whole cluster, and the reason a convincing feature is not the same as a correct one.
Frequently asked questions
Is a hologram on an ID the same as the holograms in science fiction?
No. Those are free-floating three-dimensional projections. An ID hologram is a microscopic surface relief that diffracts light so the image changes with viewing angle. The shared name causes a lot of confusion.
What is a DOVID?
Diffractive optically variable image device — the umbrella term for security features that work by diffracting light rather than by pigment. Security holograms are one kind. KINEGRAM is another, and is not technically a hologram.
How do you check an ID hologram properly?
Tilt it under a directional light and watch for the image to change, not merely to shine. Then compare what it does against a reference for that document type. Presence alone is the check that counterfeits are designed to pass.
Can a printer reproduce a hologram?
Not the diffraction. Metallic and iridescent inks produce shine and some color shift, but the image itself stays fixed. Genuine diffractive structures need origination and mastering equipment.