School of Electrical Engineering, Fleischman Faculty of Engineering, Tel Aviv University, Tel Aviv 69978, Israel
Ady Arie (ady@eng.tau.ac.il)
纸质出版日期:2021-11-30,
网络出版日期:2021-09-29,
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Storing and retrieving multiple images in 3D nonlinear photonic crystals[J]. LSA, 2021,10(11):2019-2021.
Arie, A. Storing and retrieving multiple images in 3D nonlinear photonic crystals. Light: Science & Applications, 10, 2019-2021 (2021).
Storing and retrieving multiple images in 3D nonlinear photonic crystals[J]. LSA, 2021,10(11):2019-2021. DOI: 10.1038/s41377-021-00631-5.
Arie, A. Storing and retrieving multiple images in 3D nonlinear photonic crystals. Light: Science & Applications, 10, 2019-2021 (2021). DOI: 10.1038/s41377-021-00631-5.
A nonlinear hologram enables to record the amplitude and phase of a waveform by spatially modulating the second order nonlinear coefficient
so that when a pump laser illuminates it
this waveform is reconstructed at the second harmonic frequency. The concept was now extended to enable the generation of multiple waveforms from a single hologram
with potential applications in high density storage
quantum optics
and optical microscopy.
Armstrong, J. A. et al. Interactions between light waves in a nonlinear dielectric.Phys. Rev.127, 1918–1939 (1962)..
Berger, V. Nonlinear photonic crystals.Phys. Rev. Lett.81, 4136–4139 (1998)..
Joannopoulos, J. D. et al.Photonic Crystals: Molding the Flow of Light. 2nd ed. (Princeton: Princeton University Press, 2008).
Zhu, S. N., Zhu, Y. Y.&Ming, N. B. Quasi-phase-matched third-harmonic generation in a quasi-periodic optical superlattice.Science278, 843–846 (1997)..
Lifshitz, R., Arie, A.&Bahabad, A. Photonic quasicrystals for nonlinear optical frequency conversion.Phys. Rev. Lett.95, 133901 (2005)..
Baudrier-Raybaut, M. et al. Random quasi-phase-matching in bulk polycrystalline isotropic nonlinear materials.Nature432, 374–376 (2004)..
Arie, A.&Voloch, N. Periodic, quasi-periodic, and random quadratic nonlinear photonic crystals.Laser Photonics Rev.4, 355–373 (2010)..
Yamada, M. et al. First-order quasi-phase matched LiNbO3waveguide periodically poled by applying an external field for efficient blue second-harmonic generation.Appl. Phys. Lett.62, 435–436 (1993)..
Wei, D. Z. et al. Experimental demonstration of a three-dimensional lithium niobate nonlinear photonic crystal.Nat. Photonics12, 596–600 (2018)..
Xu, T. X. et al. Three-dimensional nonlinear photonic crystal in ferroelectric barium calcium titanate.Nat. Photonics12, 591–595 (2018)..
Zhang, Y. et al. Nonlinear photonic crystals: from 2D to 3D.Optica8, 372–381 (2021)..
Lohmann, A. W.&Paris, D. P. Binary Fraunhofer holograms, generated by computer.Appl. Opt.6, 1739–1748 (1967)..
Lee, W. H. Binary computer-generated hologram.Appl. Opt.18, 3661–3669 (1979)..
Kurz, J. R. et al. Nonlinear physical optics with transversely patterned quasi-phase-matching gratings.IEEE J. Sel. Top. Quantum Electron.8, 660–664 (2002)..
Ellenbogen, T. et al. Nonlinear generation and manipulation of Airy beams.Nat. Photonics3, 395–398 (2009)..
Shapira, A., Juwiler, I.&Arie, A. Nonlinear computer-generated holograms.Opt. Lett.36, 3015–3017 (2011)..
Saltiel, S. M. et al. Multiorder nonlinear diffraction in frequency doubling processes.Opt. Lett.34, 848–850 (2009)..
Voloch Bloch, N. et al. Twisting light by nonlinear photonic crystals.Phys. Rev. Lett.108,233902 (2012)..
Shapira, A. et al. Two-dimensional nonlinear beam shaping.Opt. Lett.37, 2136–2138 (2012)..
Wei, D. Z. et al. Efficient nonlinear beam shaping in three-dimensional lithium niobate nonlinear photonic crystals.Nat. Commun.10, 4193 (2019)..
Liu, S. et al. Nonlinear wavefront shaping with optically induced three-dimensional nonlinear photonic crystals.Nat. Commun.10, 3208 (2019)..
Chen, P. C. et al. Quasi-phase-matching-division multiplexing holography in a three-dimensional nonlinear photonic crystal.Light. : Sci. Appl.10, 146 (2021)..
Rozenberg, E. et al. Inverse design of quantum holograms in three-dimensional nonlinear photonic crystals, Conference on Lasers and Electro-Optics, OSA Technical Digest (Optical Society of America, 2021), paper FM1N. 7.https://doi.org/10.1364/CLEO_QELS.2021.FM1N.7https://doi.org/10.1364/CLEO_QELS.2021.FM1N.7.
Trajtenberg-Mills, S., Juwiler, I.&Arie, A. On-axis shaping of second-harmonic beams.Laser Photonics Rev.9, L40–L44 (2015)..
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