DOAJ Open Access 2022

Ultrafast modulation of valley dynamics in multiple WS2 − Ag gratings strong coupling system

Le-Yi Zhao Hai Wang Hai-Yu Wang Qiang Zhou Xu-Lin Zhang +8 lainnya

Abstrak

Abstract Strong light-matter interactions in two-dimensional transition metal dichalcogenides (TMDCs) with robust spin-valley degrees of freedom open up the prospect of valleytronic devices. A thorough understanding on the dynamics of the valley polarizations in the strong coupling regime is urgently required. Here, multiple polarized TMDCs-SPPs hybrid systems were constructed by combining monolayer WS2 flakes to linear, circular, and spiral Ag gratings, resulting in linear and circular polarized modulation on the coherent hybrid states, respectively. Particularly, valley polaritons can be tailored asymmetrically by chiral strong coupling regime. Furthermore, the dynamics of the polarized polaritons were directly analyzed by transient absorption (TA) measurement. Both of the linear and circular polarization difference in the TA spectra can be retained for a remarkable long time, leading to a polarized PL even at room temperature. More importantly, in the chiral strong coupled WS2-spiral Ag grating devices, the mechanism of the asymmetrical valley-polarized PL (p σ+ = 14.9% and p σ- = 10.8%) is proved by the opposite valley polarization dynamics in the circularly polarized TA spectra. The multiple polarization modulation in monolayer TMDCs-SPPs strong coupling devices could provide a viable route toward multiple polarization polaritonic devices.

Topik & Kata Kunci

Penulis (13)

L

Le-Yi Zhao

H

Hai Wang

H

Hai-Yu Wang

Q

Qiang Zhou

X

Xu-Lin Zhang

T

Tong Cui

L

Lei Wang

T

Tian-Yu Liu

Y

Yu-Xiao Han

Y

Yang Luo

Y

Yuan-Yuan Yue

M

Mu-Sen Song

H

Hong-Bo Sun

Format Sitasi

Zhao, L., Wang, H., Wang, H., Zhou, Q., Zhang, X., Cui, T. et al. (2022). Ultrafast modulation of valley dynamics in multiple WS2 − Ag gratings strong coupling system. https://doi.org/10.1186/s43074-022-00049-1

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Informasi Jurnal
Tahun Terbit
2022
Sumber Database
DOAJ
DOI
10.1186/s43074-022-00049-1
Akses
Open Access ✓