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20032009
most citedVortices and chirality of magnetostatic modes in quasi-2D ferrite disk particles

40 citations · 101 across the 16 of their papers we have counts for

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Showing 2007Show all

6 papers · 1 filter

cond-mat.mtrl-sci200721 cited

Electric self inductance of quasi-2D magnetic-dipolar-mode ferrite disks

M. Sigalov, E. O. Kamenetskii, R. Shavit

An electric current flowing around a loop produces a magnetic field and hence a magnetic flux through the loop. The ratio of the magnetic flux to the electric current is called the…

cond-mat.mtrl-sci200713 cited

Eigen electric moments of magnetic-dipolar modes in quasi-2D ferrite disk particles

M. Sigalov, E. O. Kamenetskii, R. Shavit

A property associated with a vortex structure becomes evident from an analysis of confinement phenomena of magnetic oscillations in a quasi-2D ferrite disk with a dominating role o…

physics.class-ph200715 cited

Microwave whirlpools in a rectangular-waveguide cavity with a thin ferrite disk

E. O. Kamenetskii, Michael Sigalov, Reuven Shavit

We study a three dimensional system of a rectangular-waveguide resonator with an inserted thin ferrite disk. The interplay of reflection and transmission at the disk interfaces tog…

physics.class-ph20077 cited

Effective chiral magnetic currents, topological magnetic charges, and microwave vortices in a cavity with an enclosed ferrite disk

Michael Sigalov, E. O. Kamenetskii, Reuven Shavit

In microwaves, a TE-polarized rectangular-waveguide resonator with an inserted thin ferrite disk gives an example of a nonintegrable system. The interplay of reflection and transmi…

physics.class-ph2007

A new concept and design of ferrite-based microwave vortex devices

M. Sigalov, E. Kamenetskii, R. Shavit

In microwave resonant systems with ferrite samples, one becomes faced with specific phase relations for the electromagnetic fields. Such specific phase relations may lead to appear…

cond-mat.mtrl-sci200740 cited

Vortices and chirality of magnetostatic modes in quasi-2D ferrite disk particles

E. O. Kamenetskii

In this paper we show that the vortex states can be created not only in magnetically soft "small" (with the dipolar and exchange energy competition) cylindrical dots, but also in m…