On the sensitivity-enhancement in plasmonic biosensor with photonic spin Hall effect at visible wavelength

[Display omitted] •Explore the ability of BlueP/MoS2 heterostructure, and graphene to enhancing the PSHE.•The maximum Awδ±H 777.6 µm has been obtained for the H polarization.•Awδ±H decreases due to increases the radiation damping as increases in graphene layers. Photonic spin Hall effect based surfa...

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Veröffentlicht in:Chemical physics letters 2021-07, Vol.774, p.138613, Article 138613
Hauptverfasser: Srivastava, Artika, Sharma, Anuj K., Kumar Prajapati, Yogendra
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Sprache:eng
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Zusammenfassung:[Display omitted] •Explore the ability of BlueP/MoS2 heterostructure, and graphene to enhancing the PSHE.•The maximum Awδ±H 777.6 µm has been obtained for the H polarization.•Awδ±H decreases due to increases the radiation damping as increases in graphene layers. Photonic spin Hall effect based surface plasmon resonance sensor is reported to examine the sensitive detection of the biomolecules. From the obtained results, it is observed that the transverse spin-dependent shifts (SDS) can be modified if the refractive index in the sensing layer is changed by an extremely small amount. The results lead to a sensitivity of the proposed sensor as 1.555 × 105 μm/RIU, which corresponds to maximum SDS of 777.6 µm at an optimal amplified angle = 0.1°. The above-mentioned sensitivity is more than 1.4 times the sensitivity achievable with the Au-graphene plasmonic sensor design.
ISSN:0009-2614
1873-4448
DOI:10.1016/j.cplett.2021.138613