The implementation of a wide range of high-efficiency solar cell concepts is based on nanostructures with configuration-tunable optoelectronic properties. On the other hand, effective nano-optical light-trapping concepts enable the use of ultra-thin absorber architectures. In both cases, the local density of electronic and optical states deviates strongly from that of a homogeneous bulk material. At the same time, nonlocal and coherent phenomena like tunneling or ballistic transport become increasingly relevant. As a consequence, the semiclassical, diffusive bulk picture may no longer be appropriate to describe the physics of such devices. In this review, we provide a quantum-kinetic perspective on photovoltaic device operation that reaches...
In this paper, an optoelectronic device simulation framework valid for arbitrary spatial variation o...
Photovoltaics is considered to be one of the best alternatives to fossil fuels to meet global energy...
We present a comprehensive review on prospects for one-, two-, or three-dimensional nanostructure-ba...
This Topical Review discusses insights into the physical mechanisms of nanostructure solar cell oper...
The photovoltaic characteristics of an ultrathin GaAs solar cell with a gold back reflector are simu...
In this paper, a quantum-kinetic equivalent of Shockley-Read-Hall recombination is derived within th...
The photovoltaic reciprocity theory relates the electroluminescence spectrum of a solar cell under a...
This article reviews the application of the non-equilibrium Green’s function formalism to the simula...
Many advanced concepts for high-efficiency photovoltaic devices exploit the peculiar optoelectronic ...
The light-matter interaction in planar nanostructures with applications in photovoltaic devices is i...
The quantum mechanical effects resulted from the inclusion of nanostructures, represented by quantum...
The conversion efficiency of a solar panel is the most important lever in the cost of electricity it...
An optoelectronic device simulation framework valid for arbitrary spatial variation of electronic po...
A theoretical model is proposed to study the effects of carrier transport, escape, and capture proce...
We present a quantum formalism that provides a quantitative picture of the fundamental processes of ...
In this paper, an optoelectronic device simulation framework valid for arbitrary spatial variation o...
Photovoltaics is considered to be one of the best alternatives to fossil fuels to meet global energy...
We present a comprehensive review on prospects for one-, two-, or three-dimensional nanostructure-ba...
This Topical Review discusses insights into the physical mechanisms of nanostructure solar cell oper...
The photovoltaic characteristics of an ultrathin GaAs solar cell with a gold back reflector are simu...
In this paper, a quantum-kinetic equivalent of Shockley-Read-Hall recombination is derived within th...
The photovoltaic reciprocity theory relates the electroluminescence spectrum of a solar cell under a...
This article reviews the application of the non-equilibrium Green’s function formalism to the simula...
Many advanced concepts for high-efficiency photovoltaic devices exploit the peculiar optoelectronic ...
The light-matter interaction in planar nanostructures with applications in photovoltaic devices is i...
The quantum mechanical effects resulted from the inclusion of nanostructures, represented by quantum...
The conversion efficiency of a solar panel is the most important lever in the cost of electricity it...
An optoelectronic device simulation framework valid for arbitrary spatial variation of electronic po...
A theoretical model is proposed to study the effects of carrier transport, escape, and capture proce...
We present a quantum formalism that provides a quantitative picture of the fundamental processes of ...
In this paper, an optoelectronic device simulation framework valid for arbitrary spatial variation o...
Photovoltaics is considered to be one of the best alternatives to fossil fuels to meet global energy...
We present a comprehensive review on prospects for one-, two-, or three-dimensional nanostructure-ba...