We introduce a novel magnetoplasmonic sensor concept for sensitive detection of refractive index changes. The sensor consists of a periodic array of Ni/SiO2/Au dimer nanodisks. Combined effects of near-field interactions between the Ni and Au disks within the individual dimers and far-field diffractive coupling between the dimers of the array produce narrow linewidth features in the magneto-optical Faraday spectrum. We associate these features with the excitation of surface lattice resonances and show that they exhibit a spectral shift when the refractive index of the surrounding environment is varied. Because the resonances are sharp, refractive index changes are accurately detected by tracking the wavelength where the Faraday signal cross...
| openaire: EC/H2020/737093/EU//FEMTOTERABYTEWe present a systematic study on the optical and magnet...
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 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...
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...
peer reviewedWe introduce a novel magnetoplasmonic sensor concept for sensitive detection of refract...
peer reviewedWe introduce a novel magnetoplasmonic sensor concept for sensitive detection of refract...
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...
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/...
| 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...
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 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...
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...
peer reviewedWe introduce a novel magnetoplasmonic sensor concept for sensitive detection of refract...
peer reviewedWe introduce a novel magnetoplasmonic sensor concept for sensitive detection of refract...
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...
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/...
| 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...
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...