Inversion symmetry broken 2D SnP2S6 with strong nonlinear optical response
Nowadays, realizing miniaturized nonlinear optical (NLO) device is crucial to meet the growing needs in on-chip nanophotonics as well as compact integrated devices. The strong optical nonlinearities, ultrafast photoexcitation dynamics, available exciton effects as well as without lattice matching ma...
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Veröffentlicht in: | Nano research 2022-03, Vol.15 (3), p.2391-2398 |
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Hauptverfasser: | , , , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Nowadays, realizing miniaturized nonlinear optical (NLO) device is crucial to meet the growing needs in on-chip nanophotonics as well as compact integrated devices. The strong optical nonlinearities, ultrafast photoexcitation dynamics, available exciton effects as well as without lattice matching make two-dimensional (2D) layered materials potential candidates for integrated and nano-scale NLO devices. Herein, a novel and inversion symmetry broken 2D layered SnP
2
S
6
with strong second-harmonic and third-harmonic response has been reported for the first time. The second-order susceptibility (
χ
(2)
) of SnP
2
S
6
flakes can reach up to 4.06 × 10
−9
m·V
−1
under 810 nm excitation wavelength, which is around 1–2 orders of magnitude higher than that of most reported 2D materials. In addition, the NLO response of 2D SnP
2
S
6
can break through the limitation of odd/even layers and exhibit broadband spectral response. Moreover, since the second-harmonic signal is closely related to structure variation, the second-harmonic response in 2D SnP
2
S
6
is extremely sensitive to polarization angle and temperature, which is beneficial to some specific applications. The excellent NLO response in 2D SnP
2
S
6
provides a new arena for realizing miniaturized NLO devices in the future. |
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ISSN: | 1998-0124 1998-0000 |
DOI: | 10.1007/s12274-021-3806-0 |