We demonstrate that spatial arrangement and optical properties of metamaterial nanostructures can be controlled dynamically using currents and magnetic fields. Mechanical deformation of metamaterial arrays is driven by both resistive heating of bimorph nanostructures and the Lorentz force that acts on charges moving in a magnetic field. With electrically controlled transmission changes of up to 50% at sub-mW power levels, our approaches offer high contrast solutions for dynamic control of metamaterial functionalities in optoelectronic devices
The report demonstrates that reconfigurable photonic metamaterials provide a flexible platform for d...
We report reconfigurable metamaterial nanostructures controlled by electrical currents, magnetic fie...
We show that reconfigurable photonic metamaterials provide a flexible platform for fast modulation a...
We demonstrate that spatial arrangement and optical properties of metamaterial nanostructures can be...
Dynamic control over metamaterial optical properties is the basis for active metamaterials devices f...
Active and dynamic manipulation of metamaterial optical properties is the foundation for metamateria...
Dynamic control over metamaterial optical properties is the basis for the use of metamaterials as ac...
Metamaterials offer a huge range of enhanced and novel functionalities that natural materials cannot...
We demonstrate the first reconfigurable photonic metamaterial controlled by electrical currents and ...
We demonstrate the first reconfigurable photonic metamaterial controlled by electrical currents and ...
Metamaterials, artificial electromagnetic media achieved by structuring on the sub-wavelength scale,...
We demonstrate the first reconfigurable photonic metamaterial controlled by electrical currents and ...
We demonstrate the first reconfigurable photonic metamaterial controlled by electrical currents and ...
The nanomechanical metamaterials offer the possibilities of manipulating exotic electromagnetic prop...
Dynamic control over metamaterial optical properties enables active metadevices. Here we demonstrate...
The report demonstrates that reconfigurable photonic metamaterials provide a flexible platform for d...
We report reconfigurable metamaterial nanostructures controlled by electrical currents, magnetic fie...
We show that reconfigurable photonic metamaterials provide a flexible platform for fast modulation a...
We demonstrate that spatial arrangement and optical properties of metamaterial nanostructures can be...
Dynamic control over metamaterial optical properties is the basis for active metamaterials devices f...
Active and dynamic manipulation of metamaterial optical properties is the foundation for metamateria...
Dynamic control over metamaterial optical properties is the basis for the use of metamaterials as ac...
Metamaterials offer a huge range of enhanced and novel functionalities that natural materials cannot...
We demonstrate the first reconfigurable photonic metamaterial controlled by electrical currents and ...
We demonstrate the first reconfigurable photonic metamaterial controlled by electrical currents and ...
Metamaterials, artificial electromagnetic media achieved by structuring on the sub-wavelength scale,...
We demonstrate the first reconfigurable photonic metamaterial controlled by electrical currents and ...
We demonstrate the first reconfigurable photonic metamaterial controlled by electrical currents and ...
The nanomechanical metamaterials offer the possibilities of manipulating exotic electromagnetic prop...
Dynamic control over metamaterial optical properties enables active metadevices. Here we demonstrate...
The report demonstrates that reconfigurable photonic metamaterials provide a flexible platform for d...
We report reconfigurable metamaterial nanostructures controlled by electrical currents, magnetic fie...
We show that reconfigurable photonic metamaterials provide a flexible platform for fast modulation a...