|
University proceedings. Volga region. Physical and mathematical sciences, 2012, Issue 2, Pages 195–208
(Mi ivpnz503)
|
|
|
|
Physics
Probabilistic model of microwave magnetic resonance in $3D$-magnetic nanocomposites from opal matrices
O. A. Golovanova, G. S. Makeevab, M. A. Chirkinac, A. A. Efimova a Branch of the Military research and educational center of the Land Forces Combined Arms Academy of the Armed Forces of the Russian Federation, Penza
b Penza State University, Penza
c Penza State University of Architecture and Construction, Penza
Abstract:
The authors have developed a unique probabilistic model of microwave ferromagnetic resonance (FMR) in $3D$ magnetic opal nanocomposites taking into account normal distribution of a random value $H_r$ of FMR magnetic field of nanoparticles. To simulate the random value $H_r$ the researchers use a random-number generator. The bias field dependences of the expectation values of random values $Re\mu^\Sigma$, $Im\mu^\Sigma$, $Re\mu_a^\Sigma$, $Im\mu_a^\Sigma$ (the real and imaginary parts of complex diagonal $\mu^\Sigma$ and off-diagonal $\mu_a^\Sigma$ components of the effective permeability tensor for the $3D$ $Ni_{0,7}Zn_{0,3}Fe_{2}O_{4}$ particles-containing opal nanocomposites were obtained at a frequency $f = 26$ GHz for different values of damping parameter $\alpha$ of magnetic nanoparticles and the standard deviation of the random value $H_r$ of the FMR magnetic field, determined by strucrure types of nanocomposites.
Keywords:
probabilistic model, 3D-magnetic nanocomposite, ferromagnetic resonance, opal matrix.
Citation:
O. A. Golovanov, G. S. Makeeva, M. A. Chirkina, A. A. Efimov, “Probabilistic model of microwave magnetic resonance in $3D$-magnetic nanocomposites from opal matrices”, University proceedings. Volga region. Physical and mathematical sciences, 2012, no. 2, 195–208
Linking options:
https://www.mathnet.ru/eng/ivpnz503 https://www.mathnet.ru/eng/ivpnz/y2012/i2/p195
|
Statistics & downloads: |
Abstract page: | 26 | Full-text PDF : | 6 | References: | 12 |
|