We analyze theoretically a superlattice structure proposed by A. Andronov et al. [JETP Lett. 102, 207 (2015)] to give Terahertz gain for an operation point with positive differential conductivity. Here we confirm the existence of gain and show that an optimized structure displays gain above 20 cm-1 at low temperatures, so that lasing may be observable. Comparing a variety of simulations, this gain is found to be strongly affected by elastic scattering. It is shown that the dephasing modifies the nature of the relevant states, so that the common analysis based on Wannier-Stark states is not reliable for a quantitative description of the gain in structures with extremely diagonal transitions
A theoretical model of superradiant pulse generation in semiconductor laser structures is developed....
Electrons performing Bloch oscillations in an energy band of a dc-biased superlattice in the presenc...
We show that space-charge instabilities (electric-field domains) in semiconductor superlattices are ...
We analyze theoretically a superlattice structure proposed by A. Andronov et al. [JETP Lett. 102, 20...
We theoretically study the feasibility of amplification and generation of terahertz radiation in dc-...
We theoretically study the feasibility of amplification and generation of terahertz radiation in dc-...
We theoretically study the feasibility of amplification and generation of terahertz radiation in dc-...
High field electronic transport through a strongly coupled superlattice (SL) with a shunting side la...
Abstract. Bloch oscillation in electrically biased semiconductor superlattices offers broadband tera...
Using the second-order perturbation theory we have calculated the scattering assisted gain spectra i...
Elsevier use only: Received date here; revised date here; accepted date here Bloch oscillation in el...
Abstract: We consider a one-dimensional periodic potential, or “superlattice, ” in monocrystalline ...
We report a study of the role of electron scattering at acoustic and polar optic phonons for Bloch g...
We report a study of the role of electron scattering at acoustic and polar optic phonons for Bloch g...
Charge-carriers propagating in superlattices exhibit the related phenomena known as negative differe...
A theoretical model of superradiant pulse generation in semiconductor laser structures is developed....
Electrons performing Bloch oscillations in an energy band of a dc-biased superlattice in the presenc...
We show that space-charge instabilities (electric-field domains) in semiconductor superlattices are ...
We analyze theoretically a superlattice structure proposed by A. Andronov et al. [JETP Lett. 102, 20...
We theoretically study the feasibility of amplification and generation of terahertz radiation in dc-...
We theoretically study the feasibility of amplification and generation of terahertz radiation in dc-...
We theoretically study the feasibility of amplification and generation of terahertz radiation in dc-...
High field electronic transport through a strongly coupled superlattice (SL) with a shunting side la...
Abstract. Bloch oscillation in electrically biased semiconductor superlattices offers broadband tera...
Using the second-order perturbation theory we have calculated the scattering assisted gain spectra i...
Elsevier use only: Received date here; revised date here; accepted date here Bloch oscillation in el...
Abstract: We consider a one-dimensional periodic potential, or “superlattice, ” in monocrystalline ...
We report a study of the role of electron scattering at acoustic and polar optic phonons for Bloch g...
We report a study of the role of electron scattering at acoustic and polar optic phonons for Bloch g...
Charge-carriers propagating in superlattices exhibit the related phenomena known as negative differe...
A theoretical model of superradiant pulse generation in semiconductor laser structures is developed....
Electrons performing Bloch oscillations in an energy band of a dc-biased superlattice in the presenc...
We show that space-charge instabilities (electric-field domains) in semiconductor superlattices are ...