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Anisotropies of the g-factor tensor and diamagnetic coefficient in crystal-phase quantum dots in InP nanowires

Academic Article
Publication Date:
2019
abstract:
Crystal-phase low-dimensional structures offer great potential for the implementation of photonic devices of interest for quantum information processing. In this context, unveiling the fundamental parameters of the crystal phase structure is of much relevance for several applications. Here, we report on the anisotropy of the g-factor tensor and diamagnetic coefficient in wurtzite/zincblende (WZ/ZB) crystal-phase quantum dots (QDs) realized in single InP nanowires. The WZ and ZB alternating axial sections in the NWs are identified by high-angle annular dark-field scanning transmission electron microscopy. The electron (hole) g-factor tensor and the exciton diamagnetic coefficients in WZ/ZB crystal-phase QDs are determined through micro-photoluminescence measurements at low temperature (4.2 K) with different magnetic field configurations, and rationalized by invoking the spin-correlated orbital current model. Our work provides key parameters for band gap engineering and spin states control in crystal-phase low-dimensional structures in nanowires. [Figure not available: see fulltext.].
Iris type:
01.01 Articolo in rivista
Keywords:
g-factor tensor; diamagnetic coefficient; crystal-phase quantum dot; InP NWs
List of contributors:
Beltram, Fabio; Goldoni, Guido; Rossella, Francesco; Battiato, SERGIO ORAZIO; Zannier, Valentina; Sorba, Lucia; Bertoni, Andrea
Authors of the University:
BERTONI ANDREA
ROSSELLA FRANCESCO
SORBA LUCIA
ZANNIER VALENTINA
Handle:
https://iris.cnr.it/handle/20.500.14243/362039
Published in:
NANO RESEARCH (PRINT)
Journal
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URL

https://arxiv.org/pdf/1910.08725.pdf
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