Propagation of charged carriers in semiconductor superlattices is analyzed on the basis of the effective mass approximation with appropriate boundary conditions at heterojunctions taken into account. Applying the finite element method, clarified are the effects of details of the potential profile, such as linear and smooth gradings and random fluctuations, on characteristics of superlattices which are expected to work as collector barriers and energy filters in electronic devices
The statistical properties of two-dimensional systems of charges in semiconductor superlattices are ...
296-307<span style="font-size:14.0pt;line-height: 115%;font-family:" times="" new="" roman";mso-far...
A model describing the subband structures and tunneling characteristics of superlattices is presente...
Propagation of charged carriers in semiconductor superlattices is analyzed on the basis of the effec...
Propagation of charged carriers in semiconductor superlattices is analyzed on the basis of the effec...
The periodic potential and its symmetry determine the energy band structure and as a consequence the...
The tunneling effect is a phenomenon where the particle can penetrate the barrier potential even tho...
We study the electron transmission probability in semiconductor superlattices where the height of th...
We study the electron transmission probability in semiconductor superlattices where the height of th...
Abstract: We consider a one-dimensional periodic potential, or “superlattice, ” in monocrystalline ...
Multicomponent heterostructures, superlattices are considered in the paper aiming at the clearing up...
In this work, a finite periodic superlattice is studied, analyzing the probability of electronic tra...
Using high-accuracy numerical methods the author investigates the dynamics of independent electrons ...
In this paper, we perform a mathematical study of a semiconductor superlattice. Since the thickness ...
International audienceIn a quantum approach to electronic transport in semiconductor superlattices, ...
The statistical properties of two-dimensional systems of charges in semiconductor superlattices are ...
296-307<span style="font-size:14.0pt;line-height: 115%;font-family:" times="" new="" roman";mso-far...
A model describing the subband structures and tunneling characteristics of superlattices is presente...
Propagation of charged carriers in semiconductor superlattices is analyzed on the basis of the effec...
Propagation of charged carriers in semiconductor superlattices is analyzed on the basis of the effec...
The periodic potential and its symmetry determine the energy band structure and as a consequence the...
The tunneling effect is a phenomenon where the particle can penetrate the barrier potential even tho...
We study the electron transmission probability in semiconductor superlattices where the height of th...
We study the electron transmission probability in semiconductor superlattices where the height of th...
Abstract: We consider a one-dimensional periodic potential, or “superlattice, ” in monocrystalline ...
Multicomponent heterostructures, superlattices are considered in the paper aiming at the clearing up...
In this work, a finite periodic superlattice is studied, analyzing the probability of electronic tra...
Using high-accuracy numerical methods the author investigates the dynamics of independent electrons ...
In this paper, we perform a mathematical study of a semiconductor superlattice. Since the thickness ...
International audienceIn a quantum approach to electronic transport in semiconductor superlattices, ...
The statistical properties of two-dimensional systems of charges in semiconductor superlattices are ...
296-307<span style="font-size:14.0pt;line-height: 115%;font-family:" times="" new="" roman";mso-far...
A model describing the subband structures and tunneling characteristics of superlattices is presente...