We present a light-trapping design capable of significantly enhancing the photon absorption in any subcell of a multi-junction solar cell. The design works by coupling incident light into waveguide modes in one of the subcells via a diffraction grating, and preventing these modes from leaking into lower subcells via a low-index layer and a distributed Bragg reflector, which together form an omnidirectional mirror. This allows the thickness of the target subcell to be reduced without compromising photon absorption, which improves carrier collection, and therefore photocurrent. The paper focuses on using the composite structure to improve the radiation hardness of a InGaP/Ga(In)As/Ge space solar cell. In this context, it is shown via simulati...
Electronic and optoelectronic devices such as transistors, lasers and photodetectors have developed ...
We develop lattice-mismatched GaInAsP as an alternative alloy to pure As-based alloys currently used...
We explore the mechanisms for an efficient light trapping structure for thin-film silicon solar cell...
Multi-junction solar cells constitute the main source of power for space applications. However, expo...
We show that the radiation-hardness of space solar cells can be significantly improved by employing ...
In this dissert, we want to study the improvement of light trapping mechanism due to grating grown i...
Light trapping methods could increase effective optical path length of light and hence the probabili...
Light trapping methods could increase effective optical path length of light and hence the probabili...
Producing electrical power with photovoltaic solar panels is very attractive as the sun constitutes ...
In this paper, a design of a diffractive optical element to split the solar spectrum into two separa...
Multijunction (MJ) solar cells have the potential to operate across the entire solar spectrum, for u...
Significant advancements in photovoltaic solar cells are required to support large-scale energy dema...
Silicon based multi-junction solar cells are a promising option to overcome the theoretical efficien...
Achieving optimal band-gap combinations of multi-junction solar cells at production level is the mos...
Multijunction solar cells can be fabricated by mechanically bonding together component cells that ar...
Electronic and optoelectronic devices such as transistors, lasers and photodetectors have developed ...
We develop lattice-mismatched GaInAsP as an alternative alloy to pure As-based alloys currently used...
We explore the mechanisms for an efficient light trapping structure for thin-film silicon solar cell...
Multi-junction solar cells constitute the main source of power for space applications. However, expo...
We show that the radiation-hardness of space solar cells can be significantly improved by employing ...
In this dissert, we want to study the improvement of light trapping mechanism due to grating grown i...
Light trapping methods could increase effective optical path length of light and hence the probabili...
Light trapping methods could increase effective optical path length of light and hence the probabili...
Producing electrical power with photovoltaic solar panels is very attractive as the sun constitutes ...
In this paper, a design of a diffractive optical element to split the solar spectrum into two separa...
Multijunction (MJ) solar cells have the potential to operate across the entire solar spectrum, for u...
Significant advancements in photovoltaic solar cells are required to support large-scale energy dema...
Silicon based multi-junction solar cells are a promising option to overcome the theoretical efficien...
Achieving optimal band-gap combinations of multi-junction solar cells at production level is the mos...
Multijunction solar cells can be fabricated by mechanically bonding together component cells that ar...
Electronic and optoelectronic devices such as transistors, lasers and photodetectors have developed ...
We develop lattice-mismatched GaInAsP as an alternative alloy to pure As-based alloys currently used...
We explore the mechanisms for an efficient light trapping structure for thin-film silicon solar cell...