1,517 research outputs found
Nodal Analysis of Circuits Containing Current Conveyors
A special method of the nodal analysis of the circuits containing several types of the multiport current conveyors is presented in this paper. The method is based on the given regular and homogeneous models of the irregular current conveyors by the gyrators. Then a diakoptic solving and modification of the inversion of the admittance matrix is applie
Thermal entanglement and efficiency of the quantum Otto cycle for the su(1,1) Tavis-Cummings system
The influence of the dynamical Stark shift on the thermal entanglement and
the efficiency of the quantum Otto cycle is studied for the su(1,1)
Tavis-Cummings system. It is shown that the degree of the thermal entanglement
becomes larger as the dynamical Stark shift increases. In contrast, the
efficiency of the Otto cycle is degraded with an increase of the values of
dynamical Stark shift. Expressions for the efficiency coefficient are derived.
Using those expressions we identify the maximal efficiency of the quantum Otto
cycle from the experimentally measured values of the dynamical Stark shiftComment: to appear in J.Phys.
Switching from visibility to invisibility via Fano resonances: theory and experiment
Subwavelength structures demonstrate many unusual optical properties which
can be employed for engineering functional metadevices, as well as scattering
of light and invisibility cloaking. Here we demonstrate that the suppression of
light scattering for any direction of observation can be achieved for an
uniform dielectric object with high refractive index, in a sharp contrast to
the cloaking with multilayered plasmonic structures suggested previously. Our
finding is based on the novel physics of cascades of Fano resonances observed
in the Mie scattering from a homogeneous dielectric rod. We observe this effect
experimentally at microwaves by employing high temperature-dependent dielectric
permittivity of a glass cylinder with heated water. Our results open a new
avenue in analyzing the optical response of hight-index dielectric
nanoparticles and the physics of cloaking.Comment: 8 pages, 4 figure
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