Resonance phenomena in photonic and magnonic crystals of multiferroics as part of thin-film fractal structures

Authors

  • D. A. Bezuglov Rostov Branch of the Russian Customs Academy, Russian Federation
  • Gennadiy P. Sinyavsky Southern Federal University, Russian Federation
  • L. V. Cherckesova Don State Technical University, Russian Federation
  • G. N. Shalamov Rostov Scientific Research Institute of Radiocommunication, Russian Federation
  • A. N. Zaichenko Rostov Scientific Research Institute of Radiocommunication, Russian Federation

DOI:

https://doi.org/10.1109/ICATT.2015.7136884

Keywords:

ferromagnetic materials, parametric resonance, photonic and magnonic crystals, thin-film ferrostructures, multiferroics, spin electronics, fractal antenna arrays, ferro-yttrium garnet, Ghosset’s helicoids

Abstract

The paper examines nonlinear phenomena and effects in photonic and magnonic crystals of multiferroics being part of thin-film structures under exposure of external magnetic fields. The results of the fractal crystal modeling are analyzed. It is shown that for controllable smart coverings it is possible to employ the principle of reconfiguration of fractal antenna arrays with electronic commutation of subarrays. Development of a new element base on the basis of fractal photon and magnon crystals allows creating the newest devices of data processing and transmission.

References

POPKOV, A.F.; SOLOVJOV, S.V.; KULAGIN N.E.; ZVEZDIN, K.A. Spatial-Modulated Antiferromagnetic Structures in Multiferroic with Two-axis Anisotropy. Izv. VUZ. Radioelektronika, 2012, v.94, n.2, p.3-9.

SAMOYLOVICH, M.I.; TALLIS, A.L. The Crystal Multiferroics and Symmerty Features of their Magnetic Subsystems. Nano- and Microsystem Tekhnika, 2011, v.1, p.31-36.

GULJAEV, J.V.; BUGAEV, A.C.; MITJAGIN, A.J. Prospects of Using of Segnetoelectric (Ferroelectric) Materials for Microwave Frequency Devices. Uspekhi Sovremennoi Radioelektroniki, 2011, v.12, p.3-10.

GULJAEV, J.V.; NIKITOV, S.A. Photonic and Magneto-Photonic Crystals - the New Environment for an Information Transfer. Radiotekhnika, 2003, v.8, p.5-23.

POTAPOV, A.A. Fractals in Radiophysics and Radiolication: Topology of Excerption. Moscow: Universitetskaya Kniga, 2005, 367 p.

NIGMATULLIN, R.R.; POTAPOV, A.A. Fractals, Fractional Operators and Fractional Kinetics in the Dielectric Spectroscopy and Wave Processes. Fizika Volnovykh Processov i Radiotekhnicheskiye Sistemy, 2007, v.10, n.3, p.5-19.

POTAPOV, A.A. Fractals, Scaling and Fractional Operators as the Basis of New Methods Information Processing and Constructioning of Fractal Radio Systems. Tekhnologiya i Konstruirovaniye v Elektronnoi Apparature, 2008, v.77, n.5, p.21-27.

SHALAMOV, G.N. Fractals, Fractal Antennas, Frequency-Selective Surfaces and Metamaterials on the Basis of Fractal Technologies. Broad-Band and Frequency-Independent Decisions. Proc. of Int. Conf. on Obshchiye Voprosy Radioelectroniki, 2010, Rostov-on-Don, Russia. Rostov-on-Don: Scientific Research Institute of Radio Communication, 2010, v.1, p.43-64.

CHERCKESOVA, L.V. The Influence of Strong External Electromagnetic Fields of Pumping on Substances of Radioelectronic Technics with Domain Structure. Nelinejnyi Mir, 2011, v.9, n.5, p.317-323.

Published

2015-04-25

Issue

Section

Feeder circuits, materials, and measurements