Search Results - "KALKUM, F"
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Photorefractive effect in iron-doped lithium niobate crystals induced by femtosecond pulses of 1.5μm wavelength
Published in Applied physics letters (30-01-2006)“…Illumination of iron-doped lithium crystals (LiNbO3:Fe) with femtosecond pulses of 1.5μm wavelength results in large refractive index changes Δn in the order…”
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Journal Article -
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Dynamics of holographic recording with focused beams in iron-doped lithium niobate crystals
Published in Optics express (02-02-2009)“…Holograms are recorded with focused beams in an iron-doped lithium niobate crystal. The diffraction efficiency shows a maximum after several seconds of…”
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Journal Article -
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External-resonance-enhanced transmission of light through sub-wavelength holes
Published in Applied physics. B, Lasers and optics (01-07-2010)“…Using plasmonic resonances of metal films, enhanced transmission of light through sub-wavelength holes has been demonstrated. Here we show that external…”
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Holographic phase conjugation through a sub-wavelength hole
Published in Applied physics. B, Lasers and optics (01-06-2009)“…Holographic phase conjugation is analyzed as a method to create a photo-refractive lens with high numerical aperture. For this purpose a sub-wavelength hole is…”
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5
Surface-wave interferometry on single subwavelength slit-groove structures fabricated on gold films
Published in Optics express (05-03-2007)“…We apply the technique of far-field interferometry to measure the properties of surface waves generated by two-dimensional (2D) single subwavelength…”
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Journal Article -
6
Light-Assisted Generation of Tailored Ferroelectric Domain Structures
Published in Ferroelectrics (01-01-2006)“…Two different methods for light-induced domain inversion in lithium niobate crystals are currently under investigation. Illumination with ultra-violet light…”
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Photorefractive effect in iron-doped lithium niobate crystals inducedby femtosecond pulses of 1.5 μ m wavelength
Published in Applied physics letters (03-02-2006)“…Illumination of iron-doped lithium crystals ( Li Nb O 3 : Fe ) with femtosecond pulses of 1.5 μ m wavelength results in large refractive index changes Δ n in…”
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Journal Article -
9
Photorefractive effect in iron-doped lithium niobate crystals induced by femtosecond pulses of 1.5 {mu}m wavelength
Published in Applied physics letters (30-01-2006)“…Illumination of iron-doped lithium crystals (LiNbO{sub 3}:Fe) with femtosecond pulses of 1.5 {mu}m wavelength results in large refractive index changes…”
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Journal Article -
10
Domain inversion in lithium niobate crystals assisted by photorefractive space-charge fields
Published in 2006 Conference on Lasers and Electro-Optics and 2006 Quantum Electronics and Laser Science Conference (01-05-2006)“…Utilizing the photorefractive effect, space-charge fields are recorded in near-stoichiometric, iron-doped lithium niobate crystals. Together with an external…”
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Conference Proceeding -
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Holographic phase-conjugation through a sub-wavelength hole
Published in CLEO/Europe - EQEC 2009 - European Conference on Lasers and Electro-Optics and the European Quantum Electronics Conference (01-06-2009)“…We investigate a holographic lens [1] as an alternative to high-numerical-aperture microscope objectives. For this, the interference pattern of a plane…”
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Conference Proceeding -
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Light-assisted generation of tailored ferroelectric domain structures
Published in Ferroelectrics (Print) (2006)Get full text
Conference Proceeding -
13
Volume holographic phase conjugation through a sub-wavelength hole
Published in 2008 Conference on Lasers and Electro-Optics and 2008 Conference on Quantum Electronics and Laser Science (01-05-2008)“…Holographic phase conjugation is used to focus light onto sub-wavelength holes in a gold film directly on top of a photorefractive lithium niobate crystal…”
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Conference Proceeding -
14
Surface-wave interferometry on single subwavelength slit-groove structures fabricated on gold films
Published 30-11-2006“…We apply the technique of far-field interferometry to measure the properties of surface waves generated by two-dimensional (2D) single subwavelength…”
Get full text
Journal Article