Advance of photonics media is restrained by the lack of structuring techniques for the 3D fabrication of active materials with long-range periodicity. A methodology is reported for the engineering of tunable resonant photonic media with thickness exceeding the plasmonic near-field enhancement region by more than two orders of magnitude. The media architecture consists of a stochastically ordered distribution of plasmonic nanocrystals in a fractal scaffold of high-index semiconductors. This plasmonic-semiconductor fractal media supports the propagation of surface plasmons with drastically enhanced intensity over multiple length scales, overcoming the 2D limitations of established metasurface technologies. The fractal media are used for the f...
In this work, we show that modulating the fractal dimension of nanoporous gold allows its effective ...
The structural characteristics of plasmonic nanostructures directly influence their plasmonic proper...
Fractal-shaped nanoantennas have a large potential to enable multiband devices for surface-enhanced ...
Localized surface plasmon resonance (LSPR) is a subwavelength optical phenomenon that has found wide...
Localized surface plasmon resonance (LSPR) is a subwavelength optical phenomenon that has found wide...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
The scale‐invariant features of fractal‐structured materials offer significant opportunities for the...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
Metamaterials have recently established a new paradigm for enhanced light absorption in state-of-the...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
Metamaterials have recently established a new paradigm for enhanced light absorption in state-of-the...
In this work, we show that modulating the fractal dimension of nanoporous gold allows its effective ...
The structural characteristics of plasmonic nanostructures directly influence their plasmonic proper...
Fractal-shaped nanoantennas have a large potential to enable multiband devices for surface-enhanced ...
Localized surface plasmon resonance (LSPR) is a subwavelength optical phenomenon that has found wide...
Localized surface plasmon resonance (LSPR) is a subwavelength optical phenomenon that has found wide...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
The scale‐invariant features of fractal‐structured materials offer significant opportunities for the...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
Metamaterials have recently established a new paradigm for enhanced light absorption in state-of-the...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
Metamaterials have recently established a new paradigm for enhanced light absorption in state-of-the...
In this work, we show that modulating the fractal dimension of nanoporous gold allows its effective ...
The structural characteristics of plasmonic nanostructures directly influence their plasmonic proper...
Fractal-shaped nanoantennas have a large potential to enable multiband devices for surface-enhanced ...