Abstrakti
Bound states in the continuum (BICs) in planar photonic structures have attracted broad scientific interest owing to their exceptional capability to confine light. Topological robustness of certain BICs allows them to be moved in the momentum space by tuning the geometric parameters of the structure. In this work, we study such a BIC in a one-dimensional periodic grating, and find that its momentum-space position can be made a non-monotonic function of a geometric parameter, forming a locally bent V-shaped trajectory. We show that, near the turning point of this trajectory, the robustness of the BIC and its Q factor can be greatly enhanced. We tune such ‘V-BICs’ to almost merge with a symmetry-protected BIC at the Γ-point. This creates a K-shaped ultrahigh-Q region containing a BIC with a much higher and more stable Q factor compared to the ordinary merging BICs. The ‘K-BICs’ are also found to provide a strong enhancement of the Q factor in finite gratings over an extremely wide range of geometric parameters. Our findings enable further advancements in the development of ultrahigh-Q BICs and their applications.
| Alkuperäiskieli | Englanti |
|---|---|
| Artikkeli | 03LT01 |
| Sivut | 1-10 |
| Sivumäärä | 10 |
| Julkaisu | JPhys Photonics |
| Vuosikerta | 7 |
| Numero | 3 |
| DOI - pysyväislinkit | |
| Tila | Julkaistu - 31 heinäk. 2025 |
| OKM-julkaisutyyppi | A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä |
Rahoitus
The authors acknowledge support of the Research Council of Finland (Grants No. 347449 and 353758). For computational resources, the authors acknowledge the Aalto University School of Science 'Science-IT' Project and CSC—IT Center for Science, Finland.
Sormenjälki
Sukella tutkimusaiheisiin 'Enhanced Q factor and robustness of photonic bound states in the continuum merging at locally bent trajectories'. Ne muodostavat yhdessä ainutlaatuisen sormenjäljen.Tietoaineistot
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Replication package for "Enhanced Q factor and robustness of photonic bound states in the continuum merging at locally bent trajectories"
Kolkowski, R. (Creator) & Bai, H. (Creator), Fairdata , 17 jouluk. 2024
DOI - pysyväislinkki: 10.23729/17c23e47-0735-49ce-b6db-9812bf58183c
Tietoaineisto: Dataset
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Seeing the Unseeable: The ultimate limits of perfectly dark states of light
Kolkowski, R. (Vastuullinen johtaja) & Stolt, T. (Projektin jäsen)
01/09/2022 → 31/08/2027
Projekti: RCF Academy Research Fellow (new)
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Seeing the Unseeable: The ultimate limits of perfectly dark states of light
Kolkowski, R. (Vastuullinen johtaja), Bai, H. (Projektin jäsen) & Sehrawat, S. (Projektin jäsen)
01/09/2022 → 31/12/2025
Projekti: RCF Academy Research Fellow: Research costs
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