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Phonon Engineering in Twinning Superlattice Nanowires

De Luca, Marta and Fasolato, Claudia and Verheijen, Marcel A. and Ren, Yizhen and Swinkels, Milo Y. and Kölling, Sebastian and Bakkers, Erik P. A. M. and Rurali, Riccardo and Cartoixà, Xavier and Zardo, Ilaria. (2019) Phonon Engineering in Twinning Superlattice Nanowires. Nano letters, 19 (7). pp. 4702-4711.

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Official URL: https://edoc.unibas.ch/71814/

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Abstract

One of the current challenges in nanoscience is tailoring the phononic properties of a material. This has long been a rather elusive task because several phonons have wavelengths in the nanometer range. Thus, high quality nanostructuring at that length-scale, unavailable until recently, is necessary for engineering the phonon spectrum. Here we report on the continuous tuning of the phononic properties of a twinning superlattice GaP nanowire by controlling its periodicity. Our experimental results, based on Raman spectroscopy and rationalized by means of ab initio theoretical calculations, give insight into the relation between local crystal structure, overall lattice symmetry, and vibrational properties, demonstrating how material engineering at the nanoscale can be successfully employed in the rational design of the phonon spectrum of a material.
Faculties and Departments:05 Faculty of Science > Departement Physik > Physik > Experimental Material Physics (Zardo)
UniBasel Contributors:Zardo, Ilaria and De Luca, Marta and Fasolato, Claudia and Swinkels, Milo Yaro
Item Type:Article, refereed
Article Subtype:Research Article
Publisher:Amercan Chemical Society
ISSN:1530-6984
e-ISSN:1530-6992
Note:Publication type according to Uni Basel Research Database: Journal article
Language:English
Language:English
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Last Modified:31 Jan 2020 04:12
Deposited On:01 Oct 2019 12:43

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