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Mark Doost
Mark Doost
所属不明
確認したメール アドレス: cardiff.ac.uk - ホームページ
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引用先
引用先
Resonant-state expansion applied to three-dimensional open optical systems
MB Doost, W Langbein, EA Muljarov
Physical Review A 90 (1), 013834, 2014
1782014
Resonant state expansion applied to two-dimensional open optical systems
MB Doost, W Langbein, EA Muljarov
Physical Review A—Atomic, Molecular, and Optical Physics 87 (4), 043827, 2013
932013
Resonant-state expansion applied to planar waveguides
LJ Armitage, MB Doost, W Langbein, EA Muljarov
Physical Review A 89 (5), 053832, 2014
642014
Resonant-state expansion applied to planar open optical systems
MB Doost, W Langbein, EA Muljarov
Physical Review A—Atomic, Molecular, and Optical Physics 85 (2), 023835, 2012
622012
Resonant-state expansion Born approximation with a correct eigen-mode normalisation
MB Doost
Journal of Optics 18 (8), 085607, 2016
122016
Resonant-state-expansion Born approximation for waveguides with dispersion
MB Doost
Physical Review A 93 (2), 023835, 2016
102016
Resonant-state expansion for a simple dispersive medium
MB Doost, W Langbein, EA Muljarov
arXiv preprint arXiv:1508.03851, 2015
52015
Erratum: Resonant-state expansion applied to planar waveguides [Phys. Rev. A 89, 053832 (2014)]
LJ Armitage, MB Doost, W Langbein, EA Muljarov
Physical Review A 97 (4), 049901, 2018
42018
Resonant state expansion for Transverse Electric modes of two-dimensional open optical systems
MB Doost
arXiv preprint arXiv:1701.00807, 2017
42017
Foldy-Wouthuysen transfer matrix method for Dirac tunneling through monolayer graphene with a mass gap
MB Doost, HD Kasmaei, AW Beckwith
Physica E: Low-dimensional Systems and Nanostructures 130, 114654, 2021
22021
Resonant state expansion applied to open optical systems
M Doost
Cardiff University, 2014
22014
Foldy-Wouthuysen Green's Function And WKB Transfer Matrix Method For Dirac Tunneling Through Monolayer Graphene With A Mass Gap
M Doost
Available at SSRN 5018196, 2024
2024
Corrigendum to “Foldy-Wouthuysen transfer matrix method for Dirac tunneling through monolayer graphene with a mass gap” [Phys. E Low-dimens. Syst. Nanostruct. 130 (2021) 114654]
MB Doost, HD Kasmaei, AW Beckwith
Physica E: Low-dimensional Systems and Nanostructures 144, 115427, 2022
2022
Resonant-state expansion Born Approximation with a correct eigen-mode normalisation applied to Schrödinger’s equation or general wave equations
MB Doost
arXiv preprint arXiv:1508.04411, 2015
2015
Resonant-state expansion Born Approximation
MB Doost
arXiv preprint arXiv:1508.04103, 2015
2015
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