We propose that macroscopic objects built from negative-permeability metamaterials may experience resonantly enhanced magnetic force in low-frequency magnetic fields. Resonant enhancement of the time-averaged force originates from magnetostatic surface resonances (MSRs), which are analogous to the electrostatic resonances of negative-permittivity particles, well known as surface plasmon resonances in optics. We generalize the classical problem of the MSR of a homogeneous object to include anisotropic metamaterials and consider the most extreme case of anisotropy, where the permeability is negative in one direction but positive in the others. It is shown that deeply subwavelength objects made of such indefinite (hyperbolic) media exhibit a p...
Metamaterials with magnetic properties have been widely investigated with rather complex two- and th...
Electromagnetic metamaterials are a class of materials that have been artificially structured on a s...
The weakness of magnetic effects at optical frequencies is directly related to the lack of symmetry ...
A large proportion of the recent growth of the volume of electromagnetics research has been associat...
We propose an artificial three-dimensional material that exhibits a strong resonance in the effectiv...
The major issue regarding magnetic response in nature—“negative values for the permeability μ of mat...
[EN] The ability to manufacture metamaterials with exotic electromagnetic properties has potential f...
Metamaterials are composites that are engineered purposefully for realizing electromagnetic characte...
The ability to manufacture metamaterials with exotic electromagnetic properties has potential for su...
The development of a new class of artificial materials, called metamaterials, can be harnessed to pr...
6 pags.; 4 figs.; PACS number(s): 41.20.Jb, 42.70.−a, 52.40.Db, 78.67.−n© 2015 American Physical Soc...
Abstract—Photonic metamaterials are man-made materials with “lattice constants ” smaller than thewav...
The thesis is devoted to magnetic metamaterials operating in the frequency range of 10 MHz 1 GHz. ...
The study of advanced artificial electromagnetic materials, known as metamaterials, provides a link ...
Magnetic coupling is generally much weaker than electric Coulomb interaction. This also applies to t...
Metamaterials with magnetic properties have been widely investigated with rather complex two- and th...
Electromagnetic metamaterials are a class of materials that have been artificially structured on a s...
The weakness of magnetic effects at optical frequencies is directly related to the lack of symmetry ...
A large proportion of the recent growth of the volume of electromagnetics research has been associat...
We propose an artificial three-dimensional material that exhibits a strong resonance in the effectiv...
The major issue regarding magnetic response in nature—“negative values for the permeability μ of mat...
[EN] The ability to manufacture metamaterials with exotic electromagnetic properties has potential f...
Metamaterials are composites that are engineered purposefully for realizing electromagnetic characte...
The ability to manufacture metamaterials with exotic electromagnetic properties has potential for su...
The development of a new class of artificial materials, called metamaterials, can be harnessed to pr...
6 pags.; 4 figs.; PACS number(s): 41.20.Jb, 42.70.−a, 52.40.Db, 78.67.−n© 2015 American Physical Soc...
Abstract—Photonic metamaterials are man-made materials with “lattice constants ” smaller than thewav...
The thesis is devoted to magnetic metamaterials operating in the frequency range of 10 MHz 1 GHz. ...
The study of advanced artificial electromagnetic materials, known as metamaterials, provides a link ...
Magnetic coupling is generally much weaker than electric Coulomb interaction. This also applies to t...
Metamaterials with magnetic properties have been widely investigated with rather complex two- and th...
Electromagnetic metamaterials are a class of materials that have been artificially structured on a s...
The weakness of magnetic effects at optical frequencies is directly related to the lack of symmetry ...