Since its inception in 2006, transformation optics has become an established tool to understand and design electromagnetic systems. It provides a geometrical perspective into the properties of light waves without the need for a ray approximation. Most studies have focused on modifying the trajectories of light rays, e.g. beam benders, lenses, invisibility cloaks, etc. In this contribution, we explore transformation optics beyond the manipulation of light trajectories. With a few well-chosen examples, we demonstrate that transformation optics can be used to manipulate electromagnetic fields up to an unprecedented level. In the first example, we introduce an electromagnetic cavity that allows for deep subwavelength confinement of light. The c...
Within the past a few years, transformation optics has emerged as a new research area, since it prov...
Metamaterials are artificial materials with versatile properties that can be tailored to fit almost ...
Transformation Optics asks Maxwell's equations what kind of electromagnetic medium recreate some smo...
Since its inception in 2006, transformation optics has become an established tool to understand and ...
Transformation optics, a recently booming area, provides people a new approach to design optical dev...
Transformation Optics (TO) enables arbitrary control of electromagnetic waves via spatially-tailored...
Underpinned by the advent of metamaterials, transformation optics offers great versatility for contr...
Transformation optics asks, using Maxwell's equations, what kind of electromagnetic medium recreates...
Transformation optics asks, using Maxwell's equations, what kind of electromagnetic medium recreates...
Transformation optics asks, using Maxwell's equations, what kind of electromagnetic medium recreates...
Transformation optics asks, using Maxwell's equations, what kind of electromagnetic medium recreates...
We investigate the potential of transformation optics for the design of novel electromagnetic caviti...
We investigate the potential of transformation optics for the design of novel electromagnetic caviti...
Transformation optics asks, using Maxwell\u27s equations, what kind of electromagnetic medium recrea...
Within the past a few years, transformation optics has emerged as a new research area, since it prov...
Within the past a few years, transformation optics has emerged as a new research area, since it prov...
Metamaterials are artificial materials with versatile properties that can be tailored to fit almost ...
Transformation Optics asks Maxwell's equations what kind of electromagnetic medium recreate some smo...
Since its inception in 2006, transformation optics has become an established tool to understand and ...
Transformation optics, a recently booming area, provides people a new approach to design optical dev...
Transformation Optics (TO) enables arbitrary control of electromagnetic waves via spatially-tailored...
Underpinned by the advent of metamaterials, transformation optics offers great versatility for contr...
Transformation optics asks, using Maxwell's equations, what kind of electromagnetic medium recreates...
Transformation optics asks, using Maxwell's equations, what kind of electromagnetic medium recreates...
Transformation optics asks, using Maxwell's equations, what kind of electromagnetic medium recreates...
Transformation optics asks, using Maxwell's equations, what kind of electromagnetic medium recreates...
We investigate the potential of transformation optics for the design of novel electromagnetic caviti...
We investigate the potential of transformation optics for the design of novel electromagnetic caviti...
Transformation optics asks, using Maxwell\u27s equations, what kind of electromagnetic medium recrea...
Within the past a few years, transformation optics has emerged as a new research area, since it prov...
Within the past a few years, transformation optics has emerged as a new research area, since it prov...
Metamaterials are artificial materials with versatile properties that can be tailored to fit almost ...
Transformation Optics asks Maxwell's equations what kind of electromagnetic medium recreate some smo...