Direction‐Dependent Plasmonic Chiroptical Response With High Asymmetry and Dynamic Tunability

Y Yisheng He Z Zhenghua Zhu L Liang Yuan B Bowen Jin (State Key Laboratory of Chemical Resource Engineering) X Xiao Meng C Chunhong Ye

Abstract

ABSTRACT A direction‐dependent chiroptical response breaks forward‐backward symmetry, introducing an additional degree of freedom beyond conventional circular dichroism (CD) modulation in wavelength, intensity, and handedness. However, most direction‐asymmetric chiroptical materials rely on isotropic films incorporating chiral molecules, showing a relatively weak signal. Here, a plasmonic‐based chiroptical film with a direction‐dependent CD signal is achieved via linear assembly of gold nanospheres (AuNSs) on an elastomeric polymer substrate. This film demonstrates reversal of CD handedness upon changing the light propagation direction from the forward to the backward configuration, accompanied by a significantly enhanced CD intensity from −0.8 to 10.8 deg. This behavior originates from wrinkle‐induced geometrical chirality in the AuNSs assemblies under mechanical stretching, as well as the interplay between the linear dichroism of the AuNSs chains and the strain‐induced linear birefringence of the polymer film. Furthermore, the direction‐dependent response is programmable by varying the mechanical stretching ratio, applied angle, and x ‐/ y ‐orientation, enabling dynamical tuning of signal on/off, magnitude of ellipticity, and reversible handedness. This plasmonic chiroptical film not only provides a strong direction‐dependent CD response, exceeding the performance of most reported systems by 2–3 orders of magnitude, but also possesses multiple degrees of freedom for dynamical chiroptical modulation, presenting a promising platform for circularly‐polarized light‐based information encryption.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 22, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (6)

Y

Yisheng He

Z

Zhenghua Zhu

L

Liang Yuan

B

Bowen Jin

State Key Laboratory of Chemical Resource Engineering

X

Xiao Meng

C

Chunhong Ye