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GaAs/GaP superlattice nanowires: growth, vibrational and optical properties

Academic Article
Publication Date:
2022
abstract:
Nanowire geometry allows semiconductor heterostructures to be obtained that are not achievable in planar systems, as in, for example, axial superlattices made of large lattice mismatched materials. This provides a great opportunity to explore new optical transitions and vibrational properties resulting from the superstructure. Moreover, superlattice nanowires are expected to show improved thermoelectric properties, owing to the dominant role of surfaces and interfaces that can scatter phonons more effectively, reducing the lattice thermal conductivity. Here, we show the growth of long (up to 100 repetitions) GaAs/GaP superlattice nanowires with different periodicities, uniform layer thicknesses, and sharp interfaces, realized by means of Au-assisted chemical beam epitaxy. By optimizing the growth conditions, we obtained great control of the nanowire diameter, growth rate, and superlattice periodicity, offering a valuable degree of freedom for engineering photonic and phononic properties at the nanoscale. As a proof of concept, we analyzed a single type of superlattice nanowire with a well-defined periodicity and we observed room temperature optical emission and new phonon modes. Our results prove that high-quality GaAs/GaP superlattice nanowires have great potential for phononic and optoelectronic studies and applications.
Iris type:
01.01 Articolo in rivista
Keywords:
Crystal lattices; Degrees of freedom (mechanics); Growth rate; III-V semiconductors; Nanowires; Optical lattices; Optical properties; Phonons; Semiconducting gallium; Thermal conductivity
List of contributors:
Arif, Omer; Rossi, Francesca; Zannier, Valentina; Sorba, Lucia
Authors of the University:
ROSSI FRANCESCA
SORBA LUCIA
ZANNIER VALENTINA
Handle:
https://iris.cnr.it/handle/20.500.14243/416086
Published in:
NANOSCALE (PRINT)
Journal
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URL

https://pubs.rsc.org/en/content/articlelanding/2022/nr/d2nr02350d
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