Nanostructured magnetic materials provide an efficient tool for light manipulation on sub- nanosecond and sub-micron scales, and allow for the observation of the novel effects which …
This Perspective surveys the state-of-the-art and future prospects of science and technology employing nanoconfined light (nanophotonics and nanoplasmonics) in combination with …
Magnetic nanostructures sustaining different types of optical modes have been used for magnetometry and label-free ultrasensitive refractive index probing, where the main …
All-dielectric metasurfaces have been attracting much attention. Low optical losses and a huge variety of optical modes provide unique possibilities for light manipulation at the …
We review the fundamental aspects and applications of functional magneto-optic and opto- magnetic metamaterials displaying collective and coupling effects on the nanoscale, where …
The mid-infrared spectrum can be recorded from almost any material, making mid-infrared spectroscopy an extremely important and widely used sample characterization and analysis …
All-dielectric nanophotonic devices are promising candidates for future lossless (bio) sensing and telecommunication applications. Active all-dielectric magnetophotonic devices …
In previous decades, significant efforts have been devoted to increasing the magneto-optical efficiency of iron garnet materials for the miniaturization of nonreciprocal devices such as …
We demonstrate a concept for a large enhancement of the transverse magneto-optical Kerr effect (TMOKE) in the transmission mode. The concept exploits diffracted waves from …