1,720,983 research outputs found

    Nanosecond switching of photo-responsive liquid crystal diffraction gratings

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    The diffraction efficiency of periodic microstructures composed of photoresponsive liquid crystals and polymer gratings is modulated using visible CW or pulsed radiation. A polymeric template (static grating) enabled by holographic photopatterning was infiltrated by capillary flow with a high performance photosensitive (green) liquid crystal after the initial formation step. The infiltration realizes high quality diffractive structures containing well-aligned photosensitive LC molecules and layers separated by polymer walls in a transmission grating geometry. The optical anisotropy present due to the oriented liquid crystals induces a strong polarization dependence of the grating diffraction efficiency. Exposure of the periodic structure to green CW or pulsed excitation modulates both the spectral and amplitude transmission behavior of the grating structure. In particular, under the influence of single pulse excitation, the diffraction efficiency can be modulated from 87% to 17% in 4 ns with a spontaneous back relaxation time three orders of magnitude (microsecond) faster than the one observed for the same material conventionally aligned in standard glass cells. The ability to remotely and quickly change the diffraction properties of soft-composite periodic microstructures marks a breakthrough towards the realization of ultra-fast all-optical devices. This journal is © the Partner Organisations 2014

    POLICRYPS-based electrically switchable Bragg reflector

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    The formation and characterization of a switchable volume reflective element fabricated from a polymer liquid crystal (LC) polymer slice (POLICRYPS) structure by holographic photopolymerization at high temperature (65 °C) using a photosensitive/nematic liquid crystal prepolymer mixture is reported. The submicron Bragg structure formed consists of periodic continuous polymeric walls separated by periodic LC channels. The phase separated NLC self-aligns in a homeotropic alignment between the polymer walls as indicated by polarizing optical microscopy analysis (Maltese cross). The resulting periodic grating structure results in a Bragg reflection notch upon illumination with white light due to the periodic variation in refractive index. Electro-optical experiments realized through in-plane electrodes and temperature experiments confirm that the multilayer structure acts as a Bragg mirror whose reflection efficiency can be controlled by either a small (∼3V/μm) electric field or temperature

    Spontaneous radial liquid crystals alignment on curved polymeric surfaces

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    We report on the fabrication and characterization of curved periodic microstructures formed through the controlled phase separation of a liquid crystal and a polymerizing matrix comprising self-aligned liquid crystal. Imaging through a "Fresnel like" structure imparts an intensity profile onto a photosensitive mixture which subsequently forms periodic alternating curved polymeric and liquid crystal slices. The phase separated concentric rings of nematic liquid crystal self-align in a radial alignment in between the polymer walls as indicated by polarizing optical microscopy analysis (Maltese cross). Electro-optical experiments confirm the possibility to control this alignment and the optical properties of the macroscopic structure by means of a quite low external voltage. The system exhibits high-quality and self-alignment of an ordered (liquid crystal) fluid without the need of surface chemistry or functionalization. © 2014 AIP Publishing LLC

    Chirped POLICRYPS gratings containing self-aligning liquid crystals

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    A novel chirped polymer/liquid crystal diffraction grating (POLICRYPS) structure with periods ranging from 10 μm to 100 μm is reported. The chirped gratings are realized by using a single beam curing process through a diffractive waveplate mask with varying periodicity. The quality of the nematic liquid crystal (NLC) alignment inside the chirped structures as a function of periodicity was investigated using a polarized optical microscope technique. The extent of phase separation between the polymer and the NLC improves as the average spacing between the polymeric walls gets smaller. In the regions where phase separation is most complete, the duty cycle of the grating is proportional to the initial concentration of the two main components (polymer and NLC). The degree of order of the NLC within the phase separated channels was measured with a Mueller Matrix Spectroscopic Polarimeter. There is strong experimental evidence that the orientation of the NLC molecular director inside the structure is perpendicular to the surface of the polymer phase separated walls. Electro-optic measurements reveal a strong correlation between the on–off response times and the average distance between the polymeric walls. Our findings opens new avenues to realize a new generation of LCs based devices without using surface treatment or functionalization

    Plasmonic photoheating of gold nanorods in thermo-responsive chiral liquid crystals

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    We report on the thermo-optical properties of gold nanorods (GNRs) dispersed in a thermotropic cholesteric liquid crystal (CLC). We have characterized the CLC reflection band behavior for two different cell thicknesses under the influence of a suitable (resonant) pump beam. It turns out that for the 1.6 μm thick cell there is a suppression of the CLC reflection band for both pure CLC and CLC/GNRs. For the 10 μm thick cell, the presence of GNRs desensitizes the shift of the CLC reflection band to temperature. Suitable cell design enables one to 'turn off' the wavelength shift of the peak reflection, thereby turning the system into a pure amplitude measurement tool. This has implications where the probe wavelength is fixed at a common, single wavelength

    Going Beyond Counting First Authors in Author Co-citation Analysis

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    The present study examines one of the fundamental aspects of author co-citation analysis (ACA) - the way co-citation counts are defined. Co-citation counting provides the data on which all subsequent statistical analyses and mappings are based, and we compare ACA results based on two different types of co-citation counting - the traditional type that only counts the first one among a cited work's authors on the one hand and a non-traditional type that takes into account the first 5 authors of a cited work on the other hand. Results indicate that the picture produced through this non-traditional author co-citation counting contains more coherent author groups and is therefore considerably clearer. However, this picture represents fewer specialties in the research field being studied than that produced through the traditional first-author co-citation counting when the same number of top-ranked authors is selected and analyzed. Reasons for these effects are discussed

    Dynamic photonic materials based on liquid crystals

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    Liquid crystals, combining optical non-linearity and self-organizing properties with fluidity, and being responsive to a wide variety of stimuli, have reached a key point in their development for photonic applications, for the realization of devices that could be dynamically reconfigurable, widely tunable and ultra-fast controlled. In this framework, ranging from Holography to Plasmonics, we review our recent efforts on developing a new generation of dynamic, tunable, electro- and all-optical photonic systems. © 2013 Elsevier B.V

    Control of the plasmonic resonance of a graphene coated plasmonic nanoparticle array combined with a nematic liquid crystal

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    We report on the fabrication and characterization of a switchable plasmonic device based on a conductive graphene oxide (cGO) coated plasmonic nanoparticle (NP) array, layered with nematic liquid crystal (NLC) as an active medium. A monolayer of NPs has been immobilized on a glass substrate through electrostatic interaction, and then grown in place using nanochemistry. This monolayer is then coated with a thin (less then 100nm) cGO film which acts simultaneously as both an electro-conductive and active medium. The combination of the conductive NP array with a separate top cover substrate having both cGO and a standard LC alignment layer is used for aligning a NLC film in a hybrid configuration. The system is analysed in terms of morphological and electro-optical properties. The spectral response of the sample characterized after each element is added (air, cGO, NLC) reveals a red-shift of the localized plasmonic resonance (LPR) frequency of approximately 62nm with respect to the NP array surrounded by air. The application of an external voltage (8Vpp) is suitable to modulate (blue shift) the LPR frequency by approximately 22nm

    Variations on the Author

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    “Variations on the Author” discusses two of Eduardo Coutinho’s recent films (Um Dia na Vida, from 2010, and Últimas Conversas, posthumously released in 2015) and their contribution to the general question of documentary authorship. The director’s filmography is characterized by a consistent yet self-effacing form of authorial self-inscription: Coutinho often features as an interviewer that rather than express opinions propels discourses; an interviewer that is good at listening. This mode of self-inscription characterizes him as an author who is not expressive but who is nonetheless markedly present on the screen. In Um Dia na Vida, however, Coutinho is completely absent form the image, while Últimas Conversas, on the contrary, includes a confessional prologue that moves the director from the margins to the center of his films. This article examines the ways in which these works stand out in the filmography of a director who offers new insights into the notion of cinematic authorship
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