Author:
Goncharsky Alexander,Goncharsky Anton,Durlevich Svyatoslav,Melnik Dmitry
Abstract
AbstractA method is proposed to compute and synthesize a microrelief to produce a new nano-optical element for forming 3D images with full parallax at the zero order of diffraction. The synthesis of nano-optical elements requires the use of multilevel structures. A method is developed for the first time to compute the phase function of such nano-optical elements. Optical security elements that produce the new security feature are synthesized using electron-beam technology. The accuracy of microrelief formation is 10 nm in terms of depth. A sample optical security element is manufactured, which when illuminated by white light, forms a 3D image at the zero order of diffraction. Photos and video of the new 3D visual effect exhibited by real optical elements are presented. The optical elements developed can be replicated using standard equipment employed for manufacturing security holograms. The new optical security feature is easy to control visually, safely protected against counterfeiting, and designed to protect banknotes, documents, ID cards, etc.
Funder
Lomonosov Moscow State University
Publisher
Springer Science and Business Media LLC
Reference27 articles.
1. Gabor, D. A new microscopic principle. Nature 161, 777–778 (1948).
2. Benton, S. A. Hologram reconstructions with extended incoherent sources. J. Opt. Soc. Am. 59, 1545–1546 (1969).
3. Van Renesse, R.L. Optical Document Security, Artech House Optoelectronics Library (Artech House, 2005).
4. Lee, R. A. Pixelgram: An application of electron-beam lithography for the security printing industry. In Holographic Optical Security Systems Vol. 1509 (ed. Fagan, W. F.) 48–54 (SPIE, Bellingham, 1991).
5. Lancaster, I. M. & Mitchell, A. The growth of optically variable features on banknotes. In Optical Security and Counterfeit Deterrence Techniques V Vol. 5310 (ed. van Renesse, R. L.) 34–45 (SPIE, Bellingham, 2004).
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献