A tandem solar cell consisting of a III-V nanowire subcell on top of a planar Si subcell is a promising candidate for next generation photovoltaics due to the potential for high efficiency. However, for success with such applications, the geometry of the system must be optimized for absorption of sunlight. Here, we consider this absorption through optics modeling. Similarly, as for a bulk dual-junction tandem system on a silicon bottom cell, a bandgap of approximately 1.7 eV is optimum for the nanowire top cell. First, we consider a simplified system of bare, uncoated III-V nanowires on the silicon substrate and optimize the absorption in the nanowires. We find that an optimum absorption in 2000 nm long nanowires is reached for a dense arra...
AbstractArrays of III-V direct-bandgap semiconductor nanowires are promising candidates for future p...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Development of highly efficient nanowire-based photovoltaic devices requires an accurate modeling of...
A tandem solar cell consisting of a III-V nanowire subcell on top of a planar Si subcell is a promis...
This thesis describes optical and electrical modelling of vertically oriented III-V semiconductor na...
Semiconductor nanowires are a promising candidate for next-generation solar cells. However, the opti...
III-V semiconductor nanowires are a platform for next-generation photovoltaics. An interesting resea...
International audienceEffect of geometrical and structural parameters on the efficiency of the tande...
International audienceEffect of geometrical and structural parameters on the efficiency of the tande...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
International audienceDue to their nanostructured surface, nanowire-based solar cells are good candi...
International audienceDue to their nanostructured surface, nanowire-based solar cells are good candi...
International audienceDue to their nanostructured surface, nanowire-based solar cells are good candi...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
AbstractArrays of III-V direct-bandgap semiconductor nanowires are promising candidates for future p...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Development of highly efficient nanowire-based photovoltaic devices requires an accurate modeling of...
A tandem solar cell consisting of a III-V nanowire subcell on top of a planar Si subcell is a promis...
This thesis describes optical and electrical modelling of vertically oriented III-V semiconductor na...
Semiconductor nanowires are a promising candidate for next-generation solar cells. However, the opti...
III-V semiconductor nanowires are a platform for next-generation photovoltaics. An interesting resea...
International audienceEffect of geometrical and structural parameters on the efficiency of the tande...
International audienceEffect of geometrical and structural parameters on the efficiency of the tande...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
International audienceDue to their nanostructured surface, nanowire-based solar cells are good candi...
International audienceDue to their nanostructured surface, nanowire-based solar cells are good candi...
International audienceDue to their nanostructured surface, nanowire-based solar cells are good candi...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
AbstractArrays of III-V direct-bandgap semiconductor nanowires are promising candidates for future p...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Development of highly efficient nanowire-based photovoltaic devices requires an accurate modeling of...