activity
20212025
most citedModified Coupled-mode Theory for the Absorption in Plasmonic Lattices

5 citations · 18 across the 6 of their papers we have counts for

collaborators

7 papers

physics.optics2025★ 3 cited

Modelling Purcell enhancement of metasurfaces supporting quasi-bound states in the continuum

Joshua T. Y. Tse, Taisuke Enomoto, Shunsuke Murai +1

Bound states in the continuum (BIC) exhibit extremely high quality factors due to the lack of radiation loss and thus are widely studied for Purcell enhancement. However, a closer…

physics.optics2024★ 5 cited

Interpreting Purcell Enhancement of Non-Hermitian Metasurfaces with Spectral Parameters

Joshua T. Y. Tse, Shunsuke Murai, Katsuhisa Tanaka

The Purcell effect describes the enhancement of the spontaneous emission rate of an emitter near a resonant structure. However, evaluating the Purcell factor quantitatively and emp…

physics.optics2024★ 5 cited

Modified Coupled-mode Theory for the Absorption in Plasmonic Lattices

Joshua T. Y. Tse, Shunsuke Murai, Katsuhisa Tanaka

Surface lattice resonance supported on plasmonic nanoparticle arrays enhances light-matter interactions for applications such as photoluminescence enhancement. The photoluminescenc…

physics.optics2023

Study of the surface lattice resonance on basis orientation for achieving ultrahigh quality factor > 12000

C. Liu, Joshua T. Y. Tse, H. C. Ong

Periodic nanoparticle arrays can support surface lattice resonances (SLRs), which arise from the hybridization between localized surface plasmons (LSPs) and diffractive Rayleigh an…

physics.optics2023★ 5 cited

Resonant Critical Coupling of Surface Lattice Resonances with Fluorescent Absorptive Thin Film

Joshua T. Y. Tse, Shunsuke Murai, Katsuhisa Tanaka

Surface lattice resonance supported on nanoparticle arrays is a promising candidate in enhancing fluorescent effects in both absorption and emission. The optical enhancement provid…

physics.optics2022

Realization of superchiral surface lattice resonances in three-dimensional bipartite nanoparticle arrays

Joshua T. Y. Tse, H. C. Ong

Optical chirality (OC) is a fundamental property of electromagnetic waves that plays a key role in governing chiral light-matter interaction. Here, we demonstrate how to obtain sup…