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Dive into the research topics where Armandas Balčytis is active.

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Featured researches published by Armandas Balčytis.


Scientific Reports | 2016

Au-Ag-Cu nano-alloys: tailoring of permittivity

Yoshikazu Hashimoto; Gediminas Seniutinas; Armandas Balčytis; Saulius Juodkazis; Yoshiaki Nishijima

Precious metal alloys enables new possibilities to tailor materials for specific optical functions. Here we present a systematic study of the effects of a nanoscale alloying on the permittivity of Au-Ag-Cu metals at 38 different atomic mixing ratios. The permittivity was measured and analyzed numerically by applying the Drude model. X-ray diffraction (XRD) revealed the face centered cubic lattice of the alloys. Both, optical spectra and XRD results point towards an equivalent composition-dependent electron scattering behavior. Correlation between the fundamental structural parameters of alloys and the resulting optical properties is elucidated. Plasmonic properties of the Au-Ag-Cu alloy nanoparticles were investigated by numerical simulations. Guidelines for designing plasmonic response of nano- structures and their patterns are presented from the material science perspective.


RSC Advances | 2016

Silk fibroin as a water-soluble bio-resist and its thermal properties

Junko Morikawa; Meguya Ryu; Ksenia Maximova; Armandas Balčytis; Gediminas Seniutinas; Linpeng Fan; Vygantas Mizeikis; Jingliang Li; Xuewen Wang; Massimiliano Zamengo; Xungai Wang; Saulius Juodkazis

Thermal diffusivity of silk fibroin films, α = (1.6 ± 0.24) × 10−7 m2 s−1, was measured by a direct contact method. It was shown to be reduced down to ∼1 × 10−7 m2 s−1 in the crystallized phase, consistent with the multi-domain composition of β-sheet assemblies. Crystalline silk with β-sheets was made by dipping into alcohol and was used as a positive electron beam lithography (EBL) resist. It is shown by direct IR imaging of the 1619 cm−1 amide-I CO spectral signature and 3290 cm−1 amide-A N–H stretching band that an e-beam is responsible for unzipping β-sheets, which subsequently results in exposed areas returning to a water soluble state. This makes it possible to develop a water-based biocompatible silk resist and use it in lithography applications. The general principles of protein crystallization, traceable to spectral changes in IR amide bands of silk, can be used as a guide for the creation of new protein EBL resists and to quantify the electron dose required for solubility. Foam formation and laser treatments of silk can provide new approaches in surface functionalization and fabrication of 3D bio-scaffolds.


APL Photonics | 2016

Anti-reflective surfaces: Cascading nano/microstructuring

Yoshiaki Nishijima; Ryosuke Komatsu; Shunsuke Ota; Gediminas Seniutinas; Armandas Balčytis; Saulius Juodkazis

The creation of anti-reflective surfaces is reliant on the engineering of the surface textures and patterns to enable efficient trapping or transmission of light. Here we demonstrate anti-reflective layers composed of hierarchical nano/microscale features that are prepared on Si using a combination of wet and dry etching processes, and which are both scalable and affordable. The performance of the structured surfaces was tested through optical measurements of the reflectance, transmittance, and scattering spectra from the visible to mid-infrared wavelength regions, and the results were verified using numerical simulations to identify the performance of the textured anti-reflective layers. The anti-reflective properties of the layers were shown to be dramatically improved by the composite nanostructured surfaces over a broad spectral range, which thus provides a basis for the design rules that are essential for the progress towards effective anti-reflector fabrication. At normal incidence, the hierarchical...


Langmuir | 2016

Nanostructured Antireflective and Thermoisolative Cicada Wings

Junko Morikawa; Meguya Ryu; Gediminas Seniutinas; Armandas Balčytis; Ksenia Maximova; Xuewen Wang; Massimiliano Zamengo; Elena P. Ivanova; Saulius Juodkazis

Inter-related mechanical, thermal, and optical macroscopic properties of biomaterials are defined at the nanoscale by their constituent structures and patterns, which underpin complex functions of an entire bio-object. Here, the temperature diffusivity of a cicada (Cyclochila australasiae) wing with nanotextured surfaces was measured using two complementary techniques: a direct contact method and IR imaging. The 4-6-μm-thick wing section was shown to have a thermal diffusivity of α⊥ = (0.71 ± 0.15) × 10(-7) m(2)/s, as measured by the contact temperature wave method along the thickness of the wing; it corresponds to the inherent thermal property of the cuticle. The in-plane thermal diffusivity value of the wing was determined by IR imaging and was considerably larger at α∥ = (3.6 ± 0.2) × 10(-7) m(2)/s as a result of heat transport via air. Optical properties of wings covered with nanospikes were numerically simulated using an accurate 3D model of the wing pattern and showed that light is concentrated between spikes where intensity is enhanced by up to 3- to 4-fold. The closely packed pattern of nanospikes reduces the reflectivity of the wing throughout the visible light spectrum and over a wide range of incident angles, hence acting as an antireflection coating.


Biomicrofluidics | 2016

Silk patterns made by direct femtosecond laser writing

Ksenia Maximova; Xuewen Wang; Armandas Balčytis; Linpeng Fan; Jingliang Li; Saulius Juodkazis

Silk patterns in a film of amorphous water-soluble fibroin are created by tailored exposure to femtosecond-laser pulses (1030 nm/230 fs) without the use of photo-initiators. This shows that amorphous silk can be used as a negative tone photo-resist. It is also shown that water insoluble crystalline silk films can be precisely ablated from a glass substrate achieving the patterns of crystalline silk gratings on a glass substrate. Bio-compatible/degradable silk can be laser structured to achieve conformational transformations as demonstrated by infrared spectroscopy.


Nanophotonics | 2017

Tipping solutions: emerging 3D nano-fabrication/ -imaging technologies

Gediminas Seniutinas; Armandas Balčytis; Ignas Reklaitis; Feng Chen; Jeffrey A. Davis; Christian David; Saulius Juodkazis

Abstract The evolution of optical microscopy from an imaging technique into a tool for materials modification and fabrication is now being repeated with other characterization techniques, including scanning electron microscopy (SEM), focused ion beam (FIB) milling/imaging, and atomic force microscopy (AFM). Fabrication and in situ imaging of materials undergoing a three-dimensional (3D) nano-structuring within a 1−100 nm resolution window is required for future manufacturing of devices. This level of precision is critically in enabling the cross-over between different device platforms (e.g. from electronics to micro-/nano-fluidics and/or photonics) within future devices that will be interfacing with biological and molecular systems in a 3D fashion. Prospective trends in electron, ion, and nano-tip based fabrication techniques are presented.


Optics Letters | 2016

Air and dielectric bands photonic crystal microringresonator for refractive index sensing.

Darius Urbonas; Armandas Balčytis; Konstantinas Vaškevičius; Martynas Gabalis; Raimondas Petruškevičius

We present the experimental and numerical analysis of a microring resonator with an integrated one-dimensional photonic crystal fabricated on a silicon-on-insulator platform and show its applicability in bulk refractive index sensing. The photonic crystal is formed by periodically patterned, partially etched cylindrical perforations, whose induced photonic bandgap is narrower than the range of measurable wavelengths (1520-1620 nm). Of particular interest is that the microring operates in both air and dielectric bands, and the sensitivities of the resonances on both edges of the bandgap were investigated. We showed that a higher field localization inside the volume of the perforations for the air band mode leads to an increase in sensitivity.


Optics Express | 2016

Enhanced photoacoustics from gold nano-colloidal suspensions under femtosecond laser excitation.

Frances Camille P. Masim; Hao-Li Liu; Matteo Porta; Tetsu Yonezawa; Armandas Balčytis; Saulius Juodkazis; Wei-Hung Hsu; Koji Hatanaka

Enhanced photoacoustic (PA) intensity from gold nanosphere and nanorod colloidal suspensions in water under tightly-focused femtosecond pulsed laser irradiation was systematically investigated. PA signal amplitudes were measured by ultrasound transducers at frequencies of 5, 10, and 25 MHz. The experimental results revealed a linear-dependence of the relative photoacoustic amplitude on the laser power and the mechanism was attributed to non-radiative relaxation dynamics of surface plasmon oscillations. When gold nanorod with longitudinal absorption/extinction peak at 800 nm coincides with the wavelength of femtosecond laser pulses, the most efficient PA signal is generated. Laser excitation was kept within a thermal stability region of gold nanoparticles, i.e., colloidal suspension can be continuously reused for PA generation.


Materials | 2017

Silk: Optical Properties over 12.6 Octaves THz-IR-Visible-UV Range

Armandas Balčytis; Meguya Ryu; Xuewen Wang; Fabio Novelli; Gediminas Seniutinas; Shan Du; Xungai Wang; Jingliang Li; Jeffrey A. Davis; Dominique Appadoo; Junko Morikawa; Saulius Juodkazis

Domestic (Bombyx mori) and wild (Antheraea pernyi) silk fibers were characterised over a wide spectral range from THz 8 cm−1 (λ= 1.25 mm, f= 0.24 THz) to deep-UV 50×103 cm−1 (λ= 200 nm, f= 1500 THz) wavelengths or over a 12.6 octave frequency range. Spectral features at β-sheet, α-coil and amorphous fibroin were analysed at different spectral ranges. Single fiber cross sections at mid-IR were used to determine spatial distribution of different silk constituents and revealed an α-coil rich core and more broadly spread β-sheets in natural silk fibers obtained from wild Antheraea pernyi moths. Low energy T-ray bands at 243 and 229 cm−1 were observed in crystalline fibers of domestic and wild silk fibers, respectively, and showed no spectral shift down to 78 K temperature. A distinct 20±4 cm−1 band was observed in the crystalline Antheraea pernyi silk fibers. Systematic analysis and assignment of the observed spectral bands is presented. Water solubility and biodegradability of silk, required for bio-medical and sensor applications, are directly inferred from specific spectral bands.


Optics Express | 2016

Hybrid curved nano-structured micro-optical elements.

Armandas Balčytis; Davit Hakobyan; Martynas Gabalis; A. Žukauskas; Darius Urbonas; Mangirdas Malinauskas; Raimondas Petruškevičius; Etienne Brasselet; Saulius Juodkazis

Tailoring the spatial degree of freedom of light is an essential step towards the realization of advanced optical manipulation tools. A topical challenge consists of device miniaturization for improved performance and enhanced functionality at the micron scale. We demonstrate a novel approach that combines the additive three-dimensional (3D) structuring capability of laser polymerization and the subtractive subwavelength resolution patterning of focused ion beam lithography. As a case in point hybrid (dielectric/metallic) micro-optical elements that deliver a well-defined topological shaping of light are produced. Here we report on hybrid 3D binary spiral zone plates with unit and double topological charge. Their optical performances are compared to corresponding 2D counterparts both numerically and experimentally. Cooperative refractive capabilities without compromising topological beam shaping are shown. Realization of advanced designs where the dielectric architecture itself is endowed with singular properties is also discussed.

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Saulius Juodkazis

Swinburne University of Technology

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Gediminas Seniutinas

Swinburne University of Technology

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Yoshiaki Nishijima

Yokohama National University

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Junko Morikawa

Tokyo Institute of Technology

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Meguya Ryu

Tokyo Institute of Technology

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Xuewen Wang

Swinburne University of Technology

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