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September 23, 2025Nanomaterials4 citationsOpen Access

Plasmon–Exciton Strong Coupling in Low-Dimensional Materials: From Fundamentals to Hybrid Nanophotonic Platforms

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PZPeipei ZhaoCLChun-Chang LuSSShuo Sun

Key Points

  • Strong coupling offers a significant platform for advancing light-matter interaction in quantum technologies, enhancing efficiency and performance.
  • Recent studies have shown the effectiveness of plasmon-QD and plasmon-2D material hybrid systems in achieving desirable strong coupling effects.
  • The review discusses experimental methods, highlighting innovative approaches in multimode strong coupling across various low-dimensional material applications.
  • Guidance for future research directions in the plasmon-exciton strong coupling field is thoroughly provided, supporting new technological developments.

Abstract

Strong coupling has emerged as a central topic in nanophotonics, offering a powerful platform for light–matter interaction studies and advancing quantum technologies. Low-dimensional materials, such as quantum dots (QDs) and two-dimensional (2D) semiconductors, possess pronounced excitonic resonances, high stability, and size-dependent tunability, making them ideal candidates for achieving strong coupling with plasmonic structures. In this review, we systematically summarize recent progress in plasmon low-dimensional material strong coupling. We first introduce the fundamental principles and experimental methods of plasmon–exciton strong coupling, then highlight representative studies on plasmon–QDs and plasmon–2D material hybrid systems, and finally discuss recent advances in multimode strong coupling. This review will provide a comprehensive overview and offer valuable guidance for future studies in strong coupling.

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Cite This Study

Zhao et al. (2025) studied this question.

synapsesocial.com/papers/68d4759931b076d99fa6db27https://doi.org/10.3390/nano15191463
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