Thin, flexible, and efficient silicon solar cells would revolutionize the photovoltaic market and open up new opportunities for PV integration. However, as an indirect semiconductor, silicon exhibits weak absorption for infrared photons and the efficient absorption of the full above bandgap solar spectrum requires careful photon management. This review paper provides an overview on the fundamental physics of light trapping and explains known theoretical limits. Technologies that have been developed to improve light trapping will be discussed, and limitations will be addressed
Thin-film solar cells based on silicon have emerged as an alternative to standard thick wafers techn...
Renewable energy resources are essential to realize a sustainable society and a clean environment. I...
This work presents a detailed description and analysis of novel light trapping schemes, namely macro...
Thin, flexible, and efficient silicon solar cells would revolutionize the photovoltaic market and op...
Efficient photovoltaic conversion of solar energy requires optimization of both light absorption and...
We present advanced light trapping concepts for thin film silicon solar cells. When an amorphous and...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Light trapping plays a key role in solar cell to enhance light confinement and then light absorption...
Photon management is a key component in the development of efficient solar cells. Especially light-t...
AbstractIn this paper we present a theoretical study of light trapping in polycrystalline silicon (p...
Light-trapping schemes implemented with ultrathin, 3 μm thick silicon solar cells offer excellent op...
This paper considers a range of techniques which – within the realm of classical optics – can be use...
Efficient solar cells require both strong absorption and effective collection of photogenerated carr...
Theoretical: Limits for Jsc, Voc, FF and efficiency of single-junction solar cells and tandems are d...
The reflection of incident sunlight by photovoltaic modules prevents them from reaching their theore...
Thin-film solar cells based on silicon have emerged as an alternative to standard thick wafers techn...
Renewable energy resources are essential to realize a sustainable society and a clean environment. I...
This work presents a detailed description and analysis of novel light trapping schemes, namely macro...
Thin, flexible, and efficient silicon solar cells would revolutionize the photovoltaic market and op...
Efficient photovoltaic conversion of solar energy requires optimization of both light absorption and...
We present advanced light trapping concepts for thin film silicon solar cells. When an amorphous and...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Light trapping plays a key role in solar cell to enhance light confinement and then light absorption...
Photon management is a key component in the development of efficient solar cells. Especially light-t...
AbstractIn this paper we present a theoretical study of light trapping in polycrystalline silicon (p...
Light-trapping schemes implemented with ultrathin, 3 μm thick silicon solar cells offer excellent op...
This paper considers a range of techniques which – within the realm of classical optics – can be use...
Efficient solar cells require both strong absorption and effective collection of photogenerated carr...
Theoretical: Limits for Jsc, Voc, FF and efficiency of single-junction solar cells and tandems are d...
The reflection of incident sunlight by photovoltaic modules prevents them from reaching their theore...
Thin-film solar cells based on silicon have emerged as an alternative to standard thick wafers techn...
Renewable energy resources are essential to realize a sustainable society and a clean environment. I...
This work presents a detailed description and analysis of novel light trapping schemes, namely macro...