[0001] The present invention generally relates to security documents comprising a substrate
and at least one security feature, and in particular to banknotes.
[0002] Security documents such as banknotes, checks, stocks, bonds, passports, vouchers
and the like are the subject to fraudulent copying. The authentication of security
documents is a long standing problem. In order to solve this goal, security features
have been developed to allow users and machines to discriminate among genuine and
forged security documents as wells as to discriminate among different values of security
documents, in particular banknotes, using special papers, special inks, special patterns,
the inclusion of watermarks and security threads and the like.
[0003] The security documents comprise a substrate, in particular a substrate made of paper
or plastic. The security features are provided on the surface of the substrate and
within the substrate.
[0004] It is an object of the present invention to make a contribution to the development
of such security documents and to provide a security document comprising a security
feature which is unusual and obvious to the unaided eye, and which can not be reproduced
by means of any copying devices.
[0005] This object is solved with the features of claim 1. Preferred embodiments of the
invention are the subject-matter of the dependent claims.
[0006] The security document according to the invention comprises a substrate which is provided
with an arrangement of optical elements within a predetermined area of the security
document. According to the invention, the arrangement of optical elements forms an
optical reflector, wherein each of said optical elements comprises a stack of curved,
preferably spherically curved, alternating layers of different refractive indices,
i.e. an optical element having a lower refractive index follows an optical element
having a higher optical element and vice versa.
[0007] The reflector produces an unique optical effect that when viewed from any direction
under the illumination with directional incident light it provides a bright sparkling
effect, while under the illumination with diffuse incident light it provides the appearance
of a single dull colour over its surface, giving the appearance of plastic. This optical
effect is unusual and obvious to the unaided eye, and can not be reproduced by means
of any copying devices.
[0008] According to the invention, the optical elements can be arranged either on or within
said substrate of the security document and the aperture of the optical elements can
have different shapes. The optical elements preferably comprise a rectangular, quadratic,
hexagonal or circular aperture, wherein the aperture diameter of each optical element
is preferably 10 to 50 µm, in particularly 15 to 25 µm.
[0009] The curved layers of the optical elements preferably comprise a constant thickness
of 75 to 120 nm, particularly a thickness of 90 nm. However, the curved layers can
also have a different thickness.
[0010] The diameter of said stack of alternating layers is preferably greater or equal than
the aperture diameter of said optical element so as to cover the aperture of said
optical element as much as possible with active optical surface.
[0011] According to an aspect of the invention, said optical elements are covered with a
protective layer of an optically inactive material. The protective layer can be formed
as a layer providing an arrangement of optical elements having a plane or curved surface.
[0012] According to a preferred embodiment, the optical elements are arranged on a curved,
preferably convex surface in order to provide a 3-dimensional effect.
[0013] According to an alternative embodiment, the optical elements are arranged on a plane
surface which may be the plane surface of the substrate. In order to provide the 3-dimensional
effect of the optical elements being arranged on a curved surface, the optical elements
being arranged on a plane surface are preferably formed such that the optical elements
have distorted apertures representing the projection of said optical elements arranged
on the curved surface onto the plane surface.
[0014] According to another aspect of the invention, the security document is a banknote
preferably comprising a paper based-substrate.
[0015] According to a further aspect of the invention, said banknote comprises a safety
thread and / or a picture element, wherein said safety thread and / or picture element
is provided with said arrangement of optical elements.
[0016] For the purpose of illustrating the present invention, there is shown in the accompanying
drawings an embodiment which is presently preferred; it being understood that the
invention is not limited to the precise arrangement and instrumentalities shown.
- Fig. 1
- shows a perspective view of a part of a security document according to the invention,
comprising an arrangement of optical elements forming the security feature of the
security document,
- Fig. 2
- shows a front view of the arrangement of optical elements of Fig. 1, the direction
of the front view being indicated by arrow A in Fig. 1,
- Fig. 3
- shows a top view of the arrangement of optical elements of Fig. 1, the direction of
the top view being indicated by arrow B in Fig. 1.
- Fig. 4
- shows a schematic illustration of a part of an arrangement of distorted optical elements
of another security document according to the invention,
- Fig. 5
- shows a cross-sectional view of one of the optical elements of Fig. 4, and
- Fig. 6
- shows a banknote specimen provided with the arrangement of distorted optical elements
of Fig. 4.
[0017] Fig. 1, 2, and 3 show only a part of the arrangement of optical elements according
to the invention on a substrate of a security document.
[0018] The security document SD comprises a substrate 4 having an upper curved surface 18
on which an arrangement of micro-optical elements 2 forming an optical reflector is
deposited within a predetermined area of the security document SD. Since the Figures
show only a small sector of the whole preferably slight curved surface, the curvature
of the sector of the surface could not be seen. However, a substrate having a plane
upper surface can also be used, on which a basic layer can be arranged having a lower
plane surface and an upper curved surface. The arrangement of the micro-optical elements
2 can also be included in the substrate 4 of the security document SD.
[0019] Each of the micro-optical elements 2 of the preferred embodiment comprises a basic
layer 8 having a curved, preferably spherically upper surface. The basic layer is
arranged on the curved upper surface of the substrate. On the upper curved surface
of the basic layer a stack of alternating layers 10 of different refractive indices
is deposited, the alternating layers 10 also having a curved, preferably spherically
shape. If the layers are made of flexible material, the basic layer 8 causes the layers
10 to take on its spherical shape.
[0020] Furthermore, each of the micro-optical elements 2 comprises a hexagonal aperture
6 with an aperture diameter of D = 19 µm. The height H of the highest point P of the
base 8 with respect to the substrate 4 measures H = 1.5 to 3.5 µm, preferably H =
2.25 µm. The stack of the layers 10 comprises 10 high index layers 12 in total with
a refractive index of 1.54 and 9 layers with a refractive index of 1, each of which
is arranged between two high index layers 12. Each of the layers 10 has a constant
thickness of preferably 90 nm. However, the thickness of the layers 10 can vary between
75 to 120 nm. On top of the stack there is deposited a protective layer 16 of an optically
inactive material. The upper surface of the protective layer 16 has the same curvature
as the upper surface 18 of the substrate 4. The height h of the optical element and
the arrangement of optical elements, respectively, measures 4.5 to 8 µm, preferably
6 µm.
[0021] Apart from the illustrated hexagonal aperture of the optical elements, other aperture
geometries can be realized, such as rectangular, quadratic or circular apertures,
wherein the aperture diameter D of the optical element measures preferably 10 to 50
nm, particularly 15 to 25 nm.
[0022] The diameter d of the spherically shaped stack of layers 10 corresponds to the aperture
diameter D of the optical element. The diameter d of the stack of layers 10 can be
greater than the aperture diameter D of the optical element so as to cover the aperture
as much as possible with active optical surface. Fig. 5 schematically illustrates
this arrangement, wherein the stack of layers 10 exceeds the aperture diameter D for
the purpose of illustration only. The areas of this stack of layers 10 exceeding the
aperture diameter D are actually truncated.
[0023] The optical elements 2 of the security document SD according to the invention form
an optical reflector which provides the unique optical effect that it changes its
appearance depending on the type of incident illumination. When viewed from any direction
under diffuse white incident illumination, the optical reflector has the appearance
of a single dull colour, while under directional white incident illumination a bright
sparkling effect is observed, which is used for the purpose of verifying the genuineness
of the security document.
[0024] According to an alternative embodiment of the invention, the security document SD,
of which only a part is illustrated in Fig. 4, comprises a substrate 4 having a plane
upper surface instead of a curved upper surface. In comparison to the previously described
first embodiment, an arrangement of distorted micro-optical elements 2 forming an
optical reflector is deposited within a predetermined area of the security document
SD.
[0025] The arrangement of distorted micro-optical elements on a substrate having a plane
surface replace the arrangement of the undistorted micro-optical elements on a substrate
having a curved upper surface of the first embodiment of the invention. Each of the
distorted optical elements 2 is formed with a distorted aperture 22 representing the
projection of an optical element 23 arranged on a curved, preferably convex surface
20 onto the plane surface 18 of the security document, the projection being indicated
by projection lines 23b. The distortions of the optical elements 2 occur either in
one of the directions X, Y or in two directions X, Y which are orthogonal to each
other with respect to one reference point 26 which remains undistorted. The arrangement
of the distorted optical elements on a curved surface provides the same optical effect
as the arrangement of the undistorted optical elements on a plane surface. The advantage
of the distorted optical elements is that a substrate having a plane surface can be
used.
[0026] Fig. 6 shows a banknote 28 as a security document SD comprising a plane paper-based
substrate 30, on which surface analogous to the previously described embodiment of
the invention is deposited said arrangement of distorted optical elements 2 forming
the optical reflector. The distorted optical elements are included in the safety thread
32 and one of the picture elements 34 of the banknote.
1. A security document comprising a substrate (4) with a security feature, characterised in that the security feature comprises an arrangement of optical elements (2) within a predetermined
area of the security document forming an optical reflector, and that each of said
optical elements (2) comprises a stack of curved alternating layers (10) of different
refractive indices.
2. A security document according to claim 1, characterised in that said optical elements (2) are arranged on said substrate (4) of the security document.
3. A security document according to claim 2, characterised in that said optical elements (2) are arranged within said substrate (4) of the security
document.
4. A security document according to one of claims 1 to 3, characterised in that each of said layers (10) comprises a constant thickness.
5. A security document according to claim 4, characterised in that each of said layers (10) comprises a constant thickness of 75 to 120 nm, preferably
a thickness of 90 nm.
6. A security document according to at least one of claims 1 to 5, characterised in that each of said optical elements (2) comprises a rectangular, quadratic, hexagonal or
circular aperture.
7. A security document according to claim 6, characterised in that each of said optical elements (2) comprises an aperture diameter (D) of 10 to 50
µm, preferably 15 to 25 µm.
8. A security document according to claim 7, characterised in that the diameter (d) of said stack of alternating layers (10) is greater or equal than
the aperture diameter (D) of said optical element.
9. A security document according to at least one of claims 1 to 8, characterised in that said optical elements (2) are covered with a protective layer (16) of an optically
inactive material.
10. A security document according to at least one of claims 1 to 9, characterised in that said optical elements (2) are arranged on a curved surface (20), forming curved elements
(23).
11. A security document according to at least one of claims 1 to 9, characterised in that said optical elements (2) are arranged on a plane surface (18).
12. A security document according to claim 11, characterised in that each of said optical elements (2) is formed such as the optical element has a distorted
aperture (22) representing the projection of said optical element arranged on a curved
surface (20) onto a plane surface (18).
13. A security document according to at least one of claims 1 to 12, characterised in that said security document is a banknote (20).
14. A security document according to claim 13, characterised in that said banknote (20) comprises a paper based-substrate (30).
15. A security document according to claim 13 or 14, characterised in that said banknote (20) comprises a safety thread (32) and / or a picture element (34),
wherein said safety thread and / or picture element comprises said arrangement of
optical elements (2).