Issue 24, 2022

Second-harmonic generation tuning by stretching arrays of GaAs nanowires

Abstract

We present a wearable device with III–V nanowires in a flexible polymer, which is used for active mechanical tuning of the second-harmonic generation intensity. An array of vertical GaAs nanowires was grown with metalorganic vapour-phase epitaxy, then embedded in polydimethylsiloxane and detached from the rigid substrate with mechanical peel off. Experimental results show a tunability of the second-harmonic generation intensity by a factor of two for 30% stretching which matches the simulations including the distribution of sizes. We studied the impact of different parameters on the band dispersion and tunability of the second-harmonic generation, such as the pitch, the length, and the diameter. We predict at least three orders of magnitude active mechanical tuning of the nonlinear signal intensity for nanowire arrays. The flexibility of the array together with the resonant wavelength engineering make such structures perspective platforms for future bendable or stretchable nanophotonic devices as light sources or sensors.

Graphical abstract: Second-harmonic generation tuning by stretching arrays of GaAs nanowires

Supplementary files

Article information

Article type
Paper
Submitted
03 Feb 2022
Accepted
02 Jun 2022
First published
13 Jun 2022
This article is Open Access
Creative Commons BY license

Nanoscale, 2022,14, 8858-8864

Second-harmonic generation tuning by stretching arrays of GaAs nanowires

G. Saerens, E. Bloch, K. Frizyuk, O. Sergaeva, V. V. Vogler-Neuling, E. Semenova, E. Lebedkina, M. Petrov, R. Grange and M. Timofeeva, Nanoscale, 2022, 14, 8858 DOI: 10.1039/D2NR00641C

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