Polarized optical properties in type-II ZnTe/CdSe multiple quantum wells induced by interface chemical bonds
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.66.113305/fulltext
Reference14 articles.
1. Giant Optical Anisotropy of Semiconductor Heterostructures with No Common Atom and the Quantum-Confined Pockels Effect
2. Giant Electro-optical Anisotropy in Type-II Heterostructures
3. Influence of heterointerface atomic structure and defects on second-harmonic generation
4. Optical anisotropy in InAs/AlSb superlattices
5. Molecular beam epitaxy of cubic Zn1−xCdxSe and Cd1−xMnxSe and related superlattices
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1. Crystal Orientation Dependence of the Fundamental Optical Transition in type-II W-Design Quantum Well Structures;Acta Physica Polonica A;2014-11
2. Determination of valence-band offset at cubic CdSe/ZnTe type-II heterojunctions: A combined experimental and theoretical approach;Physical Review B;2012-11-08
3. Atomistic simulations of the optical absorption of type-II CdSe/ZnTe superlattices;Nanoscale Research Letters;2012-10-02
4. In-plane optical anisotropy in self-assembled Ge quantum dots induced by interfacial chemical bonds;Applied Physics Letters;2007-02-05
5. Optical anisotropy induced by pyramidal defects in Mg-doped AlGaN∕GaN superlattices;Journal of Applied Physics;2006-09-15
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