Magnetic Circular Dichroism in Hyperbolic Metamaterial Nanoparticles
Joel Kuttruff, Alessio Gabbani, Gaia Petrucci, Yingqi Zhao, Marzia, Iarossi, Esteban Pedrueza-Villalmanzo, Alexandre Dmitriev, Antonietta, Parracino, Giuseppe Strangi, Francesco De Angelis, Daniele Brida, Francesco, Pineider, Nicol\`o Maccaferri

TL;DR
This paper demonstrates magnetic circular dichroism in hyperbolic metamaterial nanoparticles, combining experimental, numerical, and analytical approaches to reveal tunable magneto-optical effects for advanced nanophotonic applications.
Contribution
It introduces the first experimental observation of magnetic circular dichroism in hyperbolic nanoparticles and provides a comprehensive model explaining the physical mechanisms involved.
Findings
Magnetic circular dichroism observed in hyperbolic nanoparticle metasurfaces.
Numerical simulations confirm experimental results.
Analytical model explains the coupling of electric and magnetic dipole modes.
Abstract
The optical properties of some nanomaterials can be controlled by an external magnetic field, providing active functionalities for a wide range of applications, from single-molecule sensing to nanoscale nonreciprocal optical isolation. Materials with broadband tunable magneto-optical response are therefore highly desired for various components in next-generation integrated photonic nanodevices. Concurrently, hyperbolic metamaterials received a lot of attention in the past decade since they exhibit unusual properties that are rarely observed in nature and provide an ideal platform to control the optical response at the nanoscale via careful design of the effective permittivity tensor, surpassing the possibilities of conventional systems. Here, we experimentally study magnetic circular dichroism in a metasurface made of type-II hyperbolic nanoparticles on a transparent substrate.…
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Taxonomy
TopicsMetamaterials and Metasurfaces Applications · Plasmonic and Surface Plasmon Research · Orbital Angular Momentum in Optics
