The field of magnetoplasmonics exploits interactions between light and magnetic matter at the nanoscale for light manipulation and resonant magneto-optics. One of the great challenges of this field is overcoming optical losses in magnetic metals. Here, we exploit surface plasmon polaritons (SPPs) excited at the interface of an SiO2/Au bilayer to induce strong magneto-optical responses on the Ni nanodisks of a periodic array. Using a reference system made of Au nanodisks, we show that optical losses in Ni hardly broaden the linewidth of SPP-driven magneto-optical signals. Loss mitigation is attained because the free electrons in the Ni nanodisks are driven into forced oscillations away from their plasmon resonance. By varying the SiO2 layer ...
We introduce a novel magnetoplasmonic sensor concept for sensitive detection of refractive index cha...
We introduce a novel magnetoplasmonic sensor concept for sensitive detection of refractive index cha...
Surfaces that are nanopatterned, metallic, and magnetic can support surface plasmon resonances, prov...
The field of magnetoplasmonics exploits interactions between light and magnetic matter at the nanosc...
The field of magnetoplasmonics exploits interactions between light and magnetic matter at the nanosc...
We present a systematic study on the optical and magneto-optical properties of Ni/SiO2/Au dimer latt...
We present a systematic study on the optical and magneto-optical properties of Ni/SiO2/Au dimer latt...
| openaire: EC/H2020/737093/EU//FEMTOTERABYTEWe present a systematic study on the optical and magnet...
peer reviewedWe present a systematic study on the optical and magneto-optical properties of Ni/SiO2/...
We present a systematic study on the optical and magneto-optical properties of Ni/SiO2/Au dimer latt...
| openaire: EC/H2020/737093/EU//FEMTOTERABYTEWe present a systematic study on the optical and magnet...
| openaire: EC/H2020/737093/EU//FEMTOTERABYTEWe present a systematic study on the optical and magnet...
We introduce a novel magnetoplasmonic sensor concept for sensitive detection of refractive index cha...
peer reviewedWe present a novel concept of a magnetically tunable plasmonic crystal based on the exc...
Surfaces that are nanopatterned, metallic, and magnetic can support surface plasmon resonances, prov...
We introduce a novel magnetoplasmonic sensor concept for sensitive detection of refractive index cha...
We introduce a novel magnetoplasmonic sensor concept for sensitive detection of refractive index cha...
Surfaces that are nanopatterned, metallic, and magnetic can support surface plasmon resonances, prov...
The field of magnetoplasmonics exploits interactions between light and magnetic matter at the nanosc...
The field of magnetoplasmonics exploits interactions between light and magnetic matter at the nanosc...
We present a systematic study on the optical and magneto-optical properties of Ni/SiO2/Au dimer latt...
We present a systematic study on the optical and magneto-optical properties of Ni/SiO2/Au dimer latt...
| openaire: EC/H2020/737093/EU//FEMTOTERABYTEWe present a systematic study on the optical and magnet...
peer reviewedWe present a systematic study on the optical and magneto-optical properties of Ni/SiO2/...
We present a systematic study on the optical and magneto-optical properties of Ni/SiO2/Au dimer latt...
| openaire: EC/H2020/737093/EU//FEMTOTERABYTEWe present a systematic study on the optical and magnet...
| openaire: EC/H2020/737093/EU//FEMTOTERABYTEWe present a systematic study on the optical and magnet...
We introduce a novel magnetoplasmonic sensor concept for sensitive detection of refractive index cha...
peer reviewedWe present a novel concept of a magnetically tunable plasmonic crystal based on the exc...
Surfaces that are nanopatterned, metallic, and magnetic can support surface plasmon resonances, prov...
We introduce a novel magnetoplasmonic sensor concept for sensitive detection of refractive index cha...
We introduce a novel magnetoplasmonic sensor concept for sensitive detection of refractive index cha...
Surfaces that are nanopatterned, metallic, and magnetic can support surface plasmon resonances, prov...