Due to the increasing trend of photonic element miniaturisation and the need for optical splitting, we propose and simulate a new type of three-dimensional (3D) optical splitter based on multimode interference (MMI) for the wavelength of 1550 nm. We present various designs and simulations of various parameters for the optimized MMI splitter. We focus on the possibility of its integration on an optical fiber. The design is focused on a possible production process using 3D laser lithography for the prepared experiments. The MMI splitter was prepared by laser lithography using direct writing process and finally investigated by output characterisation by the near-field measurement
We demonstrate a new approach for fabricating multimode interference (MMI) devices using micromachin...
This paper reports about design and simulation of planar optical multimodal splitters in combination...
We report about a design of 1x2 1310/1550 nm optical wavelength division multiplexer based on polyme...
Due to the increasing trend of photonic device miniaturisation, there is also an increased need for ...
This paper presents design, simulation, and optimization of the three-dimensional 1×4 optical multim...
In this paper, we document optical splitters based on Y-branch and also on MMI splitting principle. ...
Planar MMI couplers based on inorganic material platforms have played an essential role in photonic ...
We present a new concept of 3D polymer-based 1 × 4 beam splitter for wavelength splitting around 155...
International audiencePhotonic waveguides are promising candidates for implementing parallel, ultra-...
We report about design, fabrication and measurement of the properties of multimode 1 x 2 optical pla...
Introducing 3D sub-micrometer technologies based on polymers opened new possibilities of design and ...
A tunable multimode interference (MMI) coupler is demonstrated. The device operates by modifying the...
Two types of polymer-based three-branch symmetric planar optical power dividers (splitters) were des...
A reconfigurable multimode interference (MMI) coupler is demonstrated. The device operates by modify...
A reconfigurable multimode interference (MMI) coupler is demonstrated. The device operates by modify...
We demonstrate a new approach for fabricating multimode interference (MMI) devices using micromachin...
This paper reports about design and simulation of planar optical multimodal splitters in combination...
We report about a design of 1x2 1310/1550 nm optical wavelength division multiplexer based on polyme...
Due to the increasing trend of photonic device miniaturisation, there is also an increased need for ...
This paper presents design, simulation, and optimization of the three-dimensional 1×4 optical multim...
In this paper, we document optical splitters based on Y-branch and also on MMI splitting principle. ...
Planar MMI couplers based on inorganic material platforms have played an essential role in photonic ...
We present a new concept of 3D polymer-based 1 × 4 beam splitter for wavelength splitting around 155...
International audiencePhotonic waveguides are promising candidates for implementing parallel, ultra-...
We report about design, fabrication and measurement of the properties of multimode 1 x 2 optical pla...
Introducing 3D sub-micrometer technologies based on polymers opened new possibilities of design and ...
A tunable multimode interference (MMI) coupler is demonstrated. The device operates by modifying the...
Two types of polymer-based three-branch symmetric planar optical power dividers (splitters) were des...
A reconfigurable multimode interference (MMI) coupler is demonstrated. The device operates by modify...
A reconfigurable multimode interference (MMI) coupler is demonstrated. The device operates by modify...
We demonstrate a new approach for fabricating multimode interference (MMI) devices using micromachin...
This paper reports about design and simulation of planar optical multimodal splitters in combination...
We report about a design of 1x2 1310/1550 nm optical wavelength division multiplexer based on polyme...