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Digital polarization holograms with defined magnitude and orientation of each pixel’s birefringence
A new form of digital polarization holography is demonstrated that permits both the amplitude and the phase of a diffracted beam to be independently controlled. This permits two independent intensity images to be stored in the same hologram. To fabricate the holograms, a birefringence with defined retardance and orientation of the fast axis is recorded into a photopolymer film. The holograms are selectively read out by choosing the polarization state of the read beam. Polarization holograms of this kind increase the data density in holographic data storage and allow higher quality diffractive optical elements to be written. (C) 2009 Optical Society of America
@article{ISI:000265869600045, title = {Digital polarization holograms with defined magnitude and orientation of each pixel's birefringence}, journal = {OPTICS LETTERS}, abstract = {A new form of digital polarization holography is demonstrated that permits both the amplitude and the phase of a diffracted beam to be independently controlled. This permits two independent intensity images to be stored in the same hologram. To fabricate the holograms, a birefringence with defined retardance and orientation of the fast axis is recorded into a photopolymer film. The holograms are selectively read out by choosing the polarization state of the read beam. Polarization holograms of this kind increase the data density in holographic data storage and allow higher quality diffractive optical elements to be written. (C) 2009 Optical Society of America}, volume = {34}, number = {8}, pages = {1270-1272}, year = {2009}, slug = {isi-000265869600045}, author = {Fratz, Markus and Giel, Dominik M. and Fischer, Peer} }