AC electric field induced dielectrophoretic assembly behavior of gold nanoparticles in a wide frequency range

2016 ◽  
Vol 370 ◽  
pp. 184-192 ◽  
Author(s):  
Weiyu Liu ◽  
Chunhui Wang ◽  
Haitao Ding ◽  
Jinyou Shao ◽  
Yucheng Ding
Author(s):  
Э.П. Шурина ◽  
Д.В. Добролюбова ◽  
Е.И. Штанько

При решении задач электромагнетизма в широком частотном диапазоне в областях с тонкими пластинами, оболочками и экранами численными методами возникает проблема резкого роста сеточной дискретизации вблизи внутренних структур с разномасштабными габаритными размерами. В работе предложена модификация вариационной постановки векторного метода конечных элементов, основанная на снижении размерности модели в окрестности тонких включений, которая позволяет преодолеть эту проблему за счет специфического учета таких структур на уровне вариационной постановки. Так как редуцирование модели обычно приводит к появлению ограничений на область ее применимости, выполнено исследование диапазона допустимых частот, контрастности электрофизических характеристик матрицы и включений, геометрических особенностей внутренней структуры, для которых предложенная модель позволяет получить корректные с точки зрения физики результаты. Purpose. In this paper, we propose a reduced variational formulation for the Helmholtz equation for the electric field, in which thin highly conductive objects are approximated by surfaces with the equivalent surface current density. We conduct a study aimed at defining the range of application for the reduced variational formulation, focusing on highly contrasting thin objects of various geometrical shape and arrangement in a wide frequency range. Methodology. The modelling is performed on unstructured tetrahedral meshes. Since the reduced variational formulation treats thin highly conductive objects as surfaces, no volume mesh is constructed inside of them.We compare the results obtained by the vector FEM using the proposed variational formulation with the results obtained using standard formulation. Findings. Due to the fact that the proposed variational formulation does not require volume meshing of the thin objects, its computational cost is significantly lower. However, the reduced formulation yields correct results in a restricted frequency range. It also imposes some limitations on the minimal contrast and maximal thickness of the thin highly conductive objects. Originality/value. The proposed reduced variational formulation can be applied to simulate the time-harmonic electric field in the media with thin highly conductive inclusions of either regular or chaotic arrangement, as well as thin shielding plates or casings of various geometrical forms.


1964 ◽  
Vol 42 (6) ◽  
pp. 1270-1281 ◽  
Author(s):  
A. J. Nanassy

Electric polarization spectra of oven-dry yellow birch (Betula alleghaniensis Britt.) were measured over the range of frequencies from 50 kc/s to 50 Mc/s and temperatures from 20° to 100 °C. These observations, which provide only a section of the total dispersion and relaxation absorption spectra of the material, give information on the general variation of the dispersion curve with frequency, temperature, and grain orientation to the electric field, and indicate that the total spectra spread over a wide frequency range, probably from 0 c/s to a few Gc/s and include several absorption peaks and dispersion curves.


Soft Matter ◽  
2018 ◽  
Vol 14 (17) ◽  
pp. 3372-3377 ◽  
Author(s):  
K. Watanabe ◽  
E. Tanaka ◽  
H. Ishii ◽  
D. Nagao

Plasmonic properties of gold nanoparticles in suspension were correlated to the clustering states of the particles formed by the application of an AC electric field.


2002 ◽  
Vol 748 ◽  
Author(s):  
M. Jain ◽  
S. B. Majumder ◽  
R. S. Katiyar ◽  
A. S. Bhalla ◽  
D. C. Agrawal ◽  
...  

ABSTRACTIn the present work we have deposited MgO and Ba0.5Sr0.5TiO3 (BST50) thin layers in different sequences to make MgO:BST50 hetero-structured thin films. These films were characterized by X-ray diffraction and found to be highly (100) textured. The figure of merit {(C0-Cv)/(C0.tand)} of the hetero-structured films was found to be higher as compared to pure BST50 films measured at 1 MHz frequency with electric field of 25.3 kV/cm. These films were used to make eight element coupled micro-strip phase shifter and characterized in a frequency range of 13–15 GHz. The high frequency figure of merit (k factor, defined as the ratio of degree of phase shift per dB loss) measured at around 14 GHz with electric field of 333 kV/cm has been markedly improved (around 64.28 °/dB for hetero-structured film as compared to 24.65 °/dB for pure film). Improvement in dielectric properties in a wide frequency range in the MgO:BST are believed to be due to the higher densification of the hetero-structured films.


2015 ◽  
Vol 11 (3) ◽  
pp. 136
Author(s):  
Antonio Šarolić ◽  
Zlatko Živković ◽  
Damir Senić ◽  
Niko Ištuk

The paper presents the comprehensive experimental study of radiation characteristics of a single slot in a coaxial cable shield. The slot was realized in four different embodiments, which varied by slot orientation and length. Three orthogonal polarizations of radiated electric field were analyzed along the axis perpendicular to cable, broadside to the slot, in a broadband frequency range (80-1000 MHz). The analysis was based on thorough measurements of the coupling loss, which is the common parameter for the leaky cable characterization. The obtained results showed that the electric field component longitudinal to the cable axis considerably dominates over other two orthogonal components, for all four slot types. Doubling the length of the slot caused a ca. 20 dB increase of the radiated field. Different slot orientations, having the same length in the cross-section projection, yielded approximately equal field strengths. The results of this experimental study clearly and visibly demonstrate the radiating slot field dependence on polarization and slot geometry in a wide frequency range. Thus they are useful for planning of wireless communication systems based on radiating cables, as well as for understanding polarization related issues in such systems.


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