Excitons in spatially separated electron–hole systems: A quantum Monte Carlo study
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.360417
Reference23 articles.
1. Superlattice and Negative Differential Conductivity in Semiconductors
2. Electric field dependence of optical absorption near the band gap of quantum-well structures
3. Excitonic insulator transition in a GaSbAlSbInAs quantum-well structure
4. Exciton Binding Energy in Small-Period GaAs/Ga (1- x ) Al x As Superlattices
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1. A simple variational quantum Monte Carlo-effective mass approach for excitons and trions in quantum dots;Computer Physics Communications;2021-04
2. Characterization of background carriers in InAs/GaSb quantum well;Journal of Applied Physics;2016-03-07
3. CHALLENGES IN APPLICATION OF A MONTE CARLO METHOD TO STUDY AN EXCITON CONFINED IN AlGaAs/GaAs SINGLE QUANTUM WELL;International Journal of Modern Physics B;2012-08-13
4. Transport properties in asymmetric InAs/AlSb/GaSb electron-hole hybridized systems;Physical Review B;2003-05-15
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