Arvydas Čiegis
Kaunas University of Technology
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Featured researches published by Arvydas Čiegis.
Nanoscale Research Letters | 2015
Iryna Yaremchuk; Sarunas Meskinis; Volodymyr M. Fitio; Yaroslav Bobitski; K. Šlapikas; Arvydas Čiegis; Zigmas Balevičius; Algirdas Selskis; Sigitas Tamulevičius
Diamond-like carbon nanocomposite films with embedded silver nanoparticles are considered experimentally (spectroellipsometric characterization) and theoretically (modeling of optical properties). Metallic nanocomposite films were synthesized by reactive magnetron sputtering and were studied by transmission electron microscope (TEM) and atomic force microscope (AFM). The optical constants of the films were determined from spectroscopic ellipsometry measurements and were modeled using the Maxwell-Garnett approximations. Comparison between the extended and renormalized Maxwell-Garnett theory was conducted. Surface plasmon resonance peak have been found to be strongly dependent on the shape of nanoparticles and interaction between them.
Proceedings of SPIE | 2014
Tomas Tamulevičius; Domantas Peckus; Asta Tamulevičiene; Andrius Vasiliauskas; Arvydas Čiegis; Šarūnas Meškinis; Sigitas Tamulevičius
The investigation of relaxation processes in noble metal nanoparticles upon ultrafast excitations by femtosecond laser pulses is useful to understand the origin and the enhancement mechanism of the nonlinear optical properties for metaldielectric nanocomposites. In the current work we analyze diamond like carbon (DLC) film based copper and silver nanocomposites with different metal content synthesized employing unbalanced magnetron sputtering of metal targets with argon ions in acetylene gas atmosphere. Surface morphology and nanoparticle sizes were analyzed employing scanning electron and atomic force microscopy. Optical properties of the nanocomposite films were analyzed employing UV-VIS-NIR spectrometry. Transient absorption measurements were obtained employing Yb:KGW femtosecond laser spectroscopic system (HARPIA, Light Conversion Ltd.). Energy relaxation dynamics in Cu nanoparticles showed some significant differences from Ag nanoparticles. The increase of excitation intensity hasn’t show additional nonlinear effects for the excited state relaxation dynamics for both kinds of samples.
Nanoscale Research Letters | 2017
Šarūnas Meškinis; Domantas Peckus; Andrius Vasiliauskas; Arvydas Čiegis; Rimantas Gudaitis; Tomas Tamulevičius; Iryna Yaremchuk; Sigitas Tamulevičius
Ultrafast relaxation dynamics of diamond-like carbon (DLC) films with embedded Ag nanoparticles (DLC:Ag) and photovoltaic properties of heterojunctions consisting of DLC:Ag and crystalline silicon (DLC:Ag/Si) were investigated by means of transient absorption (TAS) spectroscopy and photovoltaic measurements. The heterojunctions using both p type and n type silicon were studied. It was found that TAS spectra of DLC:Ag films were dependent on the used excitation wavelength. At wavelengths where Ag nanoparticles absorbed light most intensively, only DLC signal was registered. This result is in good accordance with an increase of the DLC:Ag/Si heterojunction short circuit current and open circuit voltage with the excitation wavelength in the photovoltaic measurements. The dependence of the TAS spectra of DLC:Ag films and photovoltaic properties of DLC:Ag/Si heterostructures on the excitation wavelength was explained as a result of trapping of the photoexcited hot charge carriers in DLC matrix. The negative photovoltaic effect was observed for DLC:Ag/p-Si heterostructures and positive (“conventional”) for DLC:Ag/n-Si ones. It was explained by the excitation of hot plasmonic holes in the Ag nanoparticles embedded into DLC matrix. Some decrease of DLC:Ag/Si heterostructures photovoltage as well as photocurrent with DLC:Ag film thickness was observed, indicating role of the interface in the charge transfer process of photocarriers excited in Ag nanoparticles.
ACS Applied Materials & Interfaces | 2018
Šaru̅nas Meškinis; Rimantas Gudaitis; K. Šlapikas; Andrius Vasiliauskas; Arvydas Čiegis; Tomas Tamulevičius; M. Andrulevičius; Sigitas Tamulevičius
Piezoresistive properties of hydrogenated diamond-like carbon (DLC) and DLC-based nickel nanocomposite (DLC:Ni) films were studied in the range of low concentration of nickel nanoparticles. The films were deposited by reactive high power pulsed magnetron sputtering (HIPIMS) of Ni target, and some samples were deposited by direct current (dc) reactive magnetron sputtering for comparison purposes. Raman scattering spectroscopy, energy-dispersive X-ray spectrometry (EDS), and X-ray photoelectron spectroscopy (XPS) were used to study the structure and chemical composition of the films. A four-point bending test was applied to study piezoresistive properties of the films. For some samples containing less than 4 at. % Ni and for the samples containing no Ni (as defined by both EDS and XPS), a giant negative piezoresistive effect was observed. The giant negative piezoresistive effect in DLC films deposited by either reactive HIPIMS or dc magnetron sputtering of Ni target was explained by possible clustering of the sp2-bonded carbon and/or formation of areas with the decreased hydrogen content. It was suggested that the tensile stress-induced rearrangements of these conglomerations have resulted in the increased conductivity paths.
Applied Surface Science | 2014
Šarūnas Meškinis; Arvydas Čiegis; Andrius Vasiliauskas; Asta Tamulevičienė; K. Šlapikas; R. Juškėnas; G. Niaura; Sigitas Tamulevičius
Nanoscale Research Letters | 2016
Šarūnas Meškinis; Arvydas Čiegis; Andrius Vasiliauskas; K. Šlapikas; Rimantas Gudaitis; Iryna Yaremchuk; Volodymyr M. Fitio; Yaroslav Bobitski; Sigitas Tamulevičius
Surface & Coatings Technology | 2014
Šarūnas Meškinis; Andrius Vasiliauskas; K. Šlapikas; R. Gudaitis; M. Andrulevičius; Arvydas Čiegis; G. Niaura; R. Kondrotas; Sigitas Tamulevičius
Thin Solid Films | 2015
Šarūnas Meškinis; Arvydas Čiegis; Andrius Vasiliauskas; K. Šlapikas; Tomas Tamulevičius; Asta Tamulevičienė; Sigitas Tamulevičius
Diamond and Related Materials | 2015
Šarūnas Meškinis; R. Gudaitis; Andrius Vasiliauskas; Arvydas Čiegis; K. Šlapikas; Tomas Tamulevičius; M. Andrulevičius; Sigitas Tamulevičius
Materials Science | 2016
Arvydas Čiegis; V. Kopustinskas; Šarūnas Meškinis; Andrius Vasiliauskas