We theoretically study the plasmonic coupling between magnetic plasmon resonances (MPRs) and propagating surface plasmon polaritons (SPPs) in a three-dimensional (3D) metamaterial consisting of vertical Au split-ring resonators (VSRRs) array on Au substrate. By placing the VSRRs directly onto the Au substrate to remove the dielectric substrates effect, the interaction between MPRs of VSRRs and the SPP mode on the Au substrate can generate an ultranarrow-band hybrid mode with full width at half maximum (FWHM) of 2.2 nm and significantly enhanced magnetic fields, compared to that of VSRRs on dielectric substrates. Owing to the strong coupling, an anti-crossing effect similar to Rabi splitting in atomic physics is also obtained. Our proposed 3...
Plasmonic metamolecules have received much interest in the last years because they can produce a wid...
We study how to enhance the transverse magneto-optical Kerr effect (TMOKE) of ultra-thin magnetic di...
We study how to enhance the transverse magneto-optical Kerr effect (TMOKE) of ultra-thin magnetic di...
We theoretically demonstrate an approach to generate the double narrow Fano resonances via diffracti...
Split-ring resonator (SRR), one kind of building block of metamaterials, attracts wide attentions du...
Split-ring resonator (SRR), one kind of building block of metamaterials, attracts wide attentions du...
Split-ring resonator (SRR), one kind of building block of metamaterials, has attracted wide attentio...
Vertical split-ring resonators (VSRRs) were fabricated which behave as magnetic metamolecules sensit...
The past decade has seen a number of interesting designs proposed and implemented to generate artifi...
Split ring resonators (SRRs) were shown to exhibit electric and magnetic resonances from micro wave ...
Split-ring resonator (SRR), a kind of building block for metamaterial unit cell, has attracted wide ...
ABSTRACT: Plasmonic metamolecules have received much interest in the last years because they can pro...
Split ring resonator (SRR) has attracted wide attentions since the discovery of negative refraction ...
Plasmonic metamolecules have received much interest in the last years because they can produce a wid...
Abstract We numerically investigate the coupling effects of surface plasmon polaritons (SPPs) and ma...
Plasmonic metamolecules have received much interest in the last years because they can produce a wid...
We study how to enhance the transverse magneto-optical Kerr effect (TMOKE) of ultra-thin magnetic di...
We study how to enhance the transverse magneto-optical Kerr effect (TMOKE) of ultra-thin magnetic di...
We theoretically demonstrate an approach to generate the double narrow Fano resonances via diffracti...
Split-ring resonator (SRR), one kind of building block of metamaterials, attracts wide attentions du...
Split-ring resonator (SRR), one kind of building block of metamaterials, attracts wide attentions du...
Split-ring resonator (SRR), one kind of building block of metamaterials, has attracted wide attentio...
Vertical split-ring resonators (VSRRs) were fabricated which behave as magnetic metamolecules sensit...
The past decade has seen a number of interesting designs proposed and implemented to generate artifi...
Split ring resonators (SRRs) were shown to exhibit electric and magnetic resonances from micro wave ...
Split-ring resonator (SRR), a kind of building block for metamaterial unit cell, has attracted wide ...
ABSTRACT: Plasmonic metamolecules have received much interest in the last years because they can pro...
Split ring resonator (SRR) has attracted wide attentions since the discovery of negative refraction ...
Plasmonic metamolecules have received much interest in the last years because they can produce a wid...
Abstract We numerically investigate the coupling effects of surface plasmon polaritons (SPPs) and ma...
Plasmonic metamolecules have received much interest in the last years because they can produce a wid...
We study how to enhance the transverse magneto-optical Kerr effect (TMOKE) of ultra-thin magnetic di...
We study how to enhance the transverse magneto-optical Kerr effect (TMOKE) of ultra-thin magnetic di...