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Scaling a single external light trap such that it covers a large solar panel has disadvantages in terms of height and cost of the external light trap.
These disadvantages can be overcome by deploying an array of concentrators as the top part of the external light trap.
Finally, the prospects of external light trapping are analyzed and we give guidelines for improvements of the external light trap design.
An external light trap consists of a parabolic concentrator and a spacer that redirects the photons that are reflected by the solar cell back towards the solar cell.
After our recent demonstration of a 3D-printed external light trap on a small solar cell, we now consider its potential for large solar panels.
Similar(55)
We present an optimization study of concentrator arrays for external light trapping.
We fabricated 3D-printed externalighthtrapsps with a square, hexagonal and circular compound parabolic concentrator to test their suitability for concentrator arrays.
By utilizing a high refractive index substrate, a high light scattering electrode, and an external light extraction structure, trapped photons in the wave-guided and substrate modes were extracted effectively.
While this dramatic change is to some degree the result of using absolute, rather than geometric means, this is primarily caused by using a site-specific estimate of light trap efficiency rather than an external estimate from northern Tanzania.
Quantum design for a light trap.
You get all the colour you need from external light.
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