Journal article Open Access

1 × 4 MMI Visible Light Wavelength Demultiplexer Based on GaN Slot Waveguide Structures

Tamir Shoresh; Nadav Katanov; Dror Malka


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    <subfield code="a">Tamir Shoresh</subfield>
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    <subfield code="a">&lt;p&gt;Abstract &amp;mdash; High transmission losses are the key problem that limits the performances of visible light communication (VLC) system that work on wavelength division multiplexing (WDM) technology.&lt;br&gt;
In order to overcome this problem, we propose a novel design for a 1&amp;times;4 optical demultiplexer based&lt;br&gt;
on the multimode interference (MMI) in slot-waveguide structures that operates at 547 nm, 559 nm,&lt;br&gt;
566 nm and 584 nm. Gallium-nitride (GaN) and silicon-oxide (SiO2) were found to be excellent&lt;br&gt;
materials for the slot waveguide structures. Simulation results show that the proposed device can&lt;br&gt;
transmit 4-channels that work in the visible light range with a low transmission loss of 0.983-1.423 dB, crosstalk of 13.8-18.3 dB and bandwidth of 1.8-3.2 nm. Thus, this device can be very useful in visible&lt;br&gt;
light networking system that works on WDM technology.&lt;/p&gt;</subfield>
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