Parallelization of the R-matrix propagation method for the study of intense-laser-driven semiconductor superlattices
Author:
Publisher
Elsevier BV
Subject
General Physics and Astronomy,Hardware and Architecture
Reference24 articles.
1. "Dressed Excitons" in a Multiple-Quantum-Well Structure: Evidence for an Optical Stark Effect with Femtosecond Response Time
2. Interaction of Strong Single-Cycle Terahertz Pulses with Semiconductor Quantum Wells
3. The nonlinear Fano effect
4. Excitonic interactions with intense terahertz pulses in ZnSe/ZnMgSSe multiple quantum wells
5. Dynamical Franz–Keldysh effect in GaAs/AlGaAs multiple quantum wells induced by single-cycle terahertz pulses
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1. Laser-Induced Fano Resonance in Condensed Matter Physics;Resonance;2017-11-29
2. Optimizing biased semiconductor superlattices for terahertz amplification;Applied Physics Letters;2014-08-11
3. Laser-controlled exciton Fano resonance in semiconductor superlattices;Journal of Physics: Condensed Matter;2013-10-04
4. Quasienergy resonance in a dynamic Wannier-Stark ladder;Physical Review B;2013-05-15
5. Laser-induced Fano resonance in semiconductor superlattice;AIP Conference Proceedings;2013
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