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@article{UZERU_2017_51_1_a23, author = {V. N. Mughnetsyan and A. A. Kirakosyan}, title = {Elastic strain distribution in one layer quantum ring superlattice}, journal = {Proceedings of the Yerevan State University. Physical and mathematical sciences}, pages = {121--123}, publisher = {mathdoc}, volume = {51}, number = {1}, year = {2017}, language = {en}, url = {http://geodesic.mathdoc.fr/item/UZERU_2017_51_1_a23/} }
TY - JOUR AU - V. N. Mughnetsyan AU - A. A. Kirakosyan TI - Elastic strain distribution in one layer quantum ring superlattice JO - Proceedings of the Yerevan State University. Physical and mathematical sciences PY - 2017 SP - 121 EP - 123 VL - 51 IS - 1 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/UZERU_2017_51_1_a23/ LA - en ID - UZERU_2017_51_1_a23 ER -
%0 Journal Article %A V. N. Mughnetsyan %A A. A. Kirakosyan %T Elastic strain distribution in one layer quantum ring superlattice %J Proceedings of the Yerevan State University. Physical and mathematical sciences %D 2017 %P 121-123 %V 51 %N 1 %I mathdoc %U http://geodesic.mathdoc.fr/item/UZERU_2017_51_1_a23/ %G en %F UZERU_2017_51_1_a23
V. N. Mughnetsyan; A. A. Kirakosyan. Elastic strain distribution in one layer quantum ring superlattice. Proceedings of the Yerevan State University. Physical and mathematical sciences, Tome 51 (2017) no. 1, pp. 121-123. http://geodesic.mathdoc.fr/item/UZERU_2017_51_1_a23/
[1] Y. Androussi, A. Lefebvre, B. Courboules, N. Grandjean, J. Massies, T. Bouhacina, J.P.Aime, “Elastic Misfit Stress Relaxation in Highly Strained InGaAs/GaAs Structures”, Appl. Phys. Lett., 65:9 (1994), 1162–1164 | DOI
[2] E.P. O’Reilly, A.R. Adams, “Band-Structure Engineering in Strained Semiconductor Lasers”, IEEE J. Quantum Electron, 30:2 (1994), 366–379 | DOI
[3] A.D. Andreev, J.R. Downes, D.A. Faux, E.P. O’Reilly, “Strain Distributions in Quantum Dots ofArbitrary Shape”, J. Appl. Phys., 86:1 (1999), 297–305 | DOI
[4] N.A.J.M. Kleemanset al., “Oscillatory Persistent Currents in Self-Assembled Quantum Rings”, Phys. Rev. Lett., 99:14 (2007), 146808 | DOI
[5] M. Zarenia, J.M. Pereira, F.M. Peeters, G.A. Farias, “Electrostatically Confined Quantum Ringsin Bilayer Graphene”, Nano Lett., 9:12 (2009), 4088–4092 | DOI
[6] M.D. Teodoro, V.L. Campo, V. Lopez-Richard, E. Marega, G.E. Marques, Y.G. Gobato, F. Iikawa, M.J.S.P. Brasil, Z.Y. Abu Waar, V.G. Dorogan, Yu.I. Mazur, M. G. J. Salamo,, “Aharonov-Bohm Interference in Neutral Excitons: Effects of Built-In Electric Fields”, Phys. Rev. Lett., 104:8 (2010), 86401 | DOI
[7] S. Bhowmick, G. Huang, W. Guo, C.S. Lee, P. Bhattacharya, G. Ariyawansa, A.G.U. Perera, “High-Performance Quantum Ring Detector for the 1–3 Terahertz Range”, Appl. Phys. Lett., 96:23 (2010), 231103 | DOI
[8] J. Wu, Zh.M. Wang, V.G. Dorogan, Sh. Li, J. Lee, Y.I. Mazur, E.S. Kim, G.J. Salamo, “Effects of Rapid Thermal Annealing on the Optical Properties of Strain-Free Quantum Ring Solar Cells”, Nanoscale Res. Lett., 8 (2013), 5 | DOI
[9] F. Suarez, D. Granados, M.L. Dotor, J.M. Garcia, “Laser Devices with Stacked Layers ofInGaAs/GaAs Quantum Rings”, Nanotechnology, 15:4 (2004), S126–S130 | DOI
[10] J. Wu, Zh.M. Wang, K. Holmes, E.Jr. Marega, Zh. Zhou, H. Lir, Y.I. Mazu, G.J. Salamo, “Laterally Aligned Quantum Rings: From One-Dimensional Chains to Two-Dimensional Arrays”, Appl. Phys. Lett., 100:20 (2012), 203117 | DOI
[11] M. Tadic, F.M. Peeters, K.L. Janssens, M. Korkusinski, P. Hawrylak, “Strain and Band Edges in Single and Coupled Cylindrical InGaAs/GaAs and InP/InGaP Self-Assembled Quantum Dots”, J. Appl. Phys., 92:10 (2002), 5819–5829 | DOI