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PUBLICATIONS

2015
Focus Issue on surface plasmon photonics introduction
Uriel Levy, Pierre Berini, Stefan A. Maier, and N. Asger Mortensen. 12/4/2015. “Focus Issue on surface plasmon photonics introduction.” Optics Express, 23, 25, Pp. 32075-32079. Publisher's Version
PDF icon focus_issue_on_surface_plasmon_photonics_introduction.pdf
Tunable on chip optofluidic laser
Avraham Bakal, Christoph Vannahme, Anders Kristensen, and Uriel Levy. 11/23/2015. “Tunable on chip optofluidic laser.” Applied Physics Letters, 107, 211105 . Publisher's Version
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Extinction Enhancement from a Self-Assembled Quantum Dots Monolayer Using a Simple Thin Films Process
Matan Galanty, Shira Yochelis, Liron Stern, Irene Dujovne, Uriel Levy, and Yossi Paltiel. 10/16/2015. “Extinction Enhancement from a Self-Assembled Quantum Dots Monolayer Using a Simple Thin Films Process.” The Journal of Physical Chemistry C, 119, 44, Pp. 24991–24995. Publisher's Version
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Direct observation of optical near field in nanophotonics devices at the nanoscale using Scanning Thermal Microscopy
Meir Grajower, Boris Desiatov, Ilya Goykhman, Liron Stern, Noa Mazurski, and Uriel Levy. 10/14/2015. “Direct observation of optical near field in nanophotonics devices at the nanoscale using Scanning Thermal Microscopy.” Optics Express, 23, 21, Pp. 27763-27775. Publisher's Version
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Polarization selective beam shaping using nanoscale dielectric metasurfaces
Boris Desiatov, Noa Mazurski, Yeshaiahu Fainman, and Uriel Levy. 8/19/2015. “Polarization selective beam shaping using nanoscale dielectric metasurfaces.” Optics Express, 23, 17, Pp. 22611-22618. Publisher's Version
PDF icon polarization_selective_beam_shaping_using_nanoscale_dielectric_metasurfaces.pdf
Black metal thin films by deposition on dielectric antireflective moth-eye nanostructures
Alexander B. Christiansen, Gideon P. Caringal, AJeppe S. Clausen, Meir Grajower, Hesham Taha, Uriel Levy, N. Asger Mortensen, and Anders Kristensen. 6/2/2015. “Black metal thin films by deposition on dielectric antireflective moth-eye nanostructures.” Scientific Reports, 5, 10563. Publisher's Version
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Ultrahigh-Q silicon resonators in a planarized local oxidation of silicon platform
Alex Naiman, Boris Desiatov, Liron Stern, Noa Mazurski, Joseph Shappir, and Uriel Levy. 4/17/2015. “Ultrahigh-Q silicon resonators in a planarized local oxidation of silicon platform.” Optics Letters, 40, 9, Pp. 1892-1895. Publisher's Version
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Plasmonic enhanced silicon pyramids for internal photoemission schottky detectors in the near-infrared regime
Boris Desiatov, Ilya Goykhman, Noa Mazurski, Joseph Shappir, Jacob B. Khurgin, and Uriel Levy. 4/1/2015. “Plasmonic enhanced silicon pyramids for internal photoemission schottky detectors in the near-infrared regime.” OPTICA, 2, 4, Pp. 335-338. Publisher's Version
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2014
On-Chip detection of radiation guided by Dielectric-Loaded plasmonic waveguides
Zhanghua Han, Ilya P. Radko, Noa Mazurski, Boris Desiatov, Jonas Beermann, Ole Albrektsen, Uriel Levy, and Sergey I. Bozhevolnyi. 12/4/2014. “On-Chip detection of radiation guided by Dielectric-Loaded plasmonic waveguides.” Nano Letters, 15, 1, Pp. 476–480. Publisher's Version
PDF icon on-chip_detection_of_radiation_guided_by_dielectric-loaded_plasmonic_waveguides.pdf
Mode conversion based on dielectric metamaterial in silicon
David Ohana and Uriel Levy. 10/31/2014. “Mode conversion based on dielectric metamaterial in silicon.” Optics Express, 22, 22, Pp. 27617-27631. Publisher's Version
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Doppler-Based Flow Rate Sensing in Microfluidic Channels
Liron Stern, Avraham Bakal, Mor Tzur, Maya Veinguer, Noa Mazurski, Nadav Cohen, and Uriel Levy. 9/10/2014. “Doppler-Based Flow Rate Sensing in Microfluidic Channels.” Sensors, 14, 9, Pp. 16799–16807. Publisher's Version
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Fano resonances and all-optical switching in a resonantly coupled plasmonic atomic system
Liron Stern, Meir Grajower, and Uriel Levy. 9/8/2014. “Fano resonances and all-optical switching in a resonantly coupled plasmonic atomic system.” Nature Communications, 5, 4865 . Publisher's Version
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Experimental demonstration of CMOS-compatible long-range dielectric-loaded surface plasmon-polariton waveguides (LR-DLSPPWs)
Roy Zektzer, Boris Desiatov, Noa Mazurski, Sergey I. Bozhevolnyi, and Uriel Levy. 9/3/2014. “Experimental demonstration of CMOS-compatible long-range dielectric-loaded surface plasmon-polariton waveguides (LR-DLSPPWs).” Optics Express, 22, 18, Pp. 22009-22017. Publisher's Version
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Subdiffraction-limited imaging based on longitudinal modes in a spatially dispersive slab
Avner Yanai and Uriel Levy. 8/6/2014. “Subdiffraction-limited imaging based on longitudinal modes in a spatially dispersive slab.” PHYSICAL REVIEW B, 90, 075107 . Publisher's Version
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Plasmonic Metasurfaces for Coloration of Plastic Consumer Products
Jeppe S. Clausen, Emil Højlund-Nielsen, Alexander B. Christiansen, Sadegh Yazdi, Meir Grajower, Hesham Taha, Uriel Levy, Anders Kristensen, and N. Asger Mortensen. 7/8/2014. “Plasmonic Metasurfaces for Coloration of Plastic Consumer Products.” Nano Letters, 14, 8, Pp. 4499–4504. Publisher's Version
PDF icon plasmonic_metasurfaces_for_coloration_of_plastic_consumer_products.pdf
Near- and Far-Field Properties of Plasmonic Oligomers under Radially and Azimuthally Polarized Light Excitation
Avner Yanai, Meir Grajower, Gilad M. Lerman, Mario Hentschel, Harald Giessen, and Uriel Levy. 4/23/2014. “Near- and Far-Field Properties of Plasmonic Oligomers under Radially and Azimuthally Polarized Light Excitation.” ACS NANO, 8, 5, Pp. 4969–4974. Publisher's Version
PDF icon near-_and_far-field_properties_of_plasmonic_oligomers_under_radially_and_azimuthally_polarized_light_excitation.pdf
Defect-assisted sub-bandgap avalanche photodetection in interleaved carrier-depletion silicon waveguide for telecom band
Boris Desiatov, Ilya Goykhman, Joseph Shappir, and Uriel Levy. 3/4/2014. “Defect-assisted sub-bandgap avalanche photodetection in interleaved carrier-depletion silicon waveguide for telecom band.” Applied Physics Letters, 104, 091105. Publisher's Version
PDF icon defect-assisted_sub-bandgap_avalanche_photodetection_in_interleaved_carrier-depletion_silicon_waveguide_for_telecom_band.pdf