We demonstrate the operation of a flexible optical filter based on guided mode resonances that operates in the visible regime. The filter is fabricated on a free standing polymeric membrane of 1.3 μm thickness and we show how the geometrical design parameters of the filter determine its optical properties, and how various types of filter can be made with this scheme. To highlight the versatility and robustness of the approach, we mount a filter onto a collimated fibre output and demonstrate successful wavelength filtering.Publisher PDFPeer reviewe
The optical properties of materials can be manipulated by structures roughly the size of the wavelen...
Plasmonics enables the realization of new optical components. Here, we report yet another plasmonic ...
We report on the fabrication and characterization of plasmonic structures on flexible substrates (Me...
We demonstrate the operation of a flexible optical filter based on guided mode resonances that opera...
ADF acknowledges support from EPSRC (EP/I004602/1 and EP/J004200/1).In this paper we present the des...
We demonstrate a method to add photonic functionalities to the tip of hollow photonic crystal bres, ...
Optical filters with reconfigurable spectral properties are highly desirable in a wide range of appl...
Optical filters with reconfigurable spectral properties are highly desirable in a wide range of appl...
We present our recent results on the design, fabrication and applications of flexible metamaterials ...
The authors acknowledge support by EPSRC (EP/I004602/1 and EP/J004200/1).Flexible metamaterials (FMM...
In this work an optical fiber tunable filter based on lossy guided-mode resonances (LGMR) is propose...
Free-standing all-polymer microring resonator optical filters as prototypical elements in flexible i...
Nanoplasmonics has provided a way to control light with extremely high precision, into nanoscale vol...
This dissertation develops a theoretical framework for guided mode resonance filters (GMRFs) with su...
Photonic membranes (PMs) are thin, highly-flexible, membranes which can be imbued with specific phot...
The optical properties of materials can be manipulated by structures roughly the size of the wavelen...
Plasmonics enables the realization of new optical components. Here, we report yet another plasmonic ...
We report on the fabrication and characterization of plasmonic structures on flexible substrates (Me...
We demonstrate the operation of a flexible optical filter based on guided mode resonances that opera...
ADF acknowledges support from EPSRC (EP/I004602/1 and EP/J004200/1).In this paper we present the des...
We demonstrate a method to add photonic functionalities to the tip of hollow photonic crystal bres, ...
Optical filters with reconfigurable spectral properties are highly desirable in a wide range of appl...
Optical filters with reconfigurable spectral properties are highly desirable in a wide range of appl...
We present our recent results on the design, fabrication and applications of flexible metamaterials ...
The authors acknowledge support by EPSRC (EP/I004602/1 and EP/J004200/1).Flexible metamaterials (FMM...
In this work an optical fiber tunable filter based on lossy guided-mode resonances (LGMR) is propose...
Free-standing all-polymer microring resonator optical filters as prototypical elements in flexible i...
Nanoplasmonics has provided a way to control light with extremely high precision, into nanoscale vol...
This dissertation develops a theoretical framework for guided mode resonance filters (GMRFs) with su...
Photonic membranes (PMs) are thin, highly-flexible, membranes which can be imbued with specific phot...
The optical properties of materials can be manipulated by structures roughly the size of the wavelen...
Plasmonics enables the realization of new optical components. Here, we report yet another plasmonic ...
We report on the fabrication and characterization of plasmonic structures on flexible substrates (Me...