Improving the Efficiency Enhancement of Photonic Crystal Based InGaN Solar Cell by Using a GaN Cap Layer
Tamara Funda Gundogdu, Mutlu Gökkavas, E. Özbay
Abstract
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Tamara Funda Gundogdu, Mutlu Gökkavas, E. Özbay
Abstract
Open-access reader
We studied a high indium content (0.8) InGaN based solar cell design where the active InGaN layer is sandwiched between a GaN cap layer and a GaN spacer layer. The incorporation of the sacrificial cap layer allows for the etching of the front surface without removing the active InGaN resulting in a 50% enhancement of the short-circuit current density for a 15 nm-thick InGaN layer.
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We studied a high indium content (0.8) InGaN based solar cell design where the active InGaN layer is sandwiched between a GaN cap layer and a GaN spacer layer. The incorporation of the sacrificial cap layer allows for the etching of the front surface without removing the active InGaN resulting in a 50% enhancement of the short-circuit current density for a 15 nm-thick InGaN layer.
Key concepts: Materials science, Layer (electronics), Optoelectronics, Solar cell, Etching (microfabrication), Indium, Active layer, Photonic crystal