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Título
Fourier transform study of the complex electric field induced on axially heterostructured nanowires
Año del Documento
2019
Editorial
IOP Publishing
Descripción
Producción Científica
Documento Fuente
Nanotechnology, 2019, vol. 30, 465205 (6pp)
Resumen
We present in this work a study of the effect of Raman enhancement on axially heterostructured
semiconductor nanowires (NWs). The investigation is motivated by the recent detection of a
Raman signal enhancement effect at the heterojunction (HJ) of axially heterostructured NWs.
Semiconductor NWs offer very interesting properties as compared to their bulk counterparts,
making them the building blocks of future optoelectronic nanodevices. The use of HJs turns out
to be essential for a great variety of devices. As a result, understanding the optical properties of
heterostructured NWs is a fundamental step for their possible application on future technologies.
In order to unveil the underlying physics of the light/NW interaction, the complex-valued
electromagnetic (EM) field distribution induced inside heterostructured NWs under light
exposure is studied. The use of the Fourier transform is presented as a key tool in order to
ascertain the different components of the EM field generated inside the NW. The results show
the presence of two components: one associated with the incident light beam and a second one
which appears as a consequence of the presence of the axial HJ. This second component explains
the emergence of the Raman enhancement effect as a result of the interaction of the incident
beam with the dielectric discontinuity associated with the HJ.
Palabras Clave
nanowires, axial heterostructures, Fourier transform, electromagnetic enhancement
Revisión por pares
SI
Patrocinador
This work was funded by Junta de Castilla y León (Project VA283P18), and Spanish Government (ENE 2014-56069- C4-4-R). J L Pura was granted by the FPU programme (Spanish Government: FPU14/00916).
Idioma
eng
Tipo de versión
info:eu-repo/semantics/submittedVersion
Derechos
openAccess
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