Presentation
4 October 2023 Single-photon emission near a transdimensional plasmonic plate
Author Affiliations +
Abstract
The properties of a two-level quantum dipole emitter (DE) near an ultrathin transdimensional (TD) plasmonic film are studied theoretically [1]. TD quantum materials are atomically-thin films of precisely controlled thickness, films made of precisely controlled finite number of monolayers [2-5]. The model system studied mimics a solid-state single-photon source device. The spontaneous and stimulated emission intensity profiles are computed as functions of the excitation frequency and film thickness, followed by the analysis of the second-order photon correlations to explore the photon antibunching effect. It is shown that ultrathin TD films can greatly improve photon antibunching with thickness reduction, which allows one to control the quantum properties of light and make them more pronounced. The theory can be tested in experiments similar to those reported recently for epitaxial TiN films with thicknesses below 10 nm grown on MgO substrates and covered with an AlScN passivation layer [5], with nanodiamond NV-centers as DEs deposited on the varied-thickness passivation layer. Knowledge of these features is advantageous for solid-state single-photon source device engineering and in general for the development of the new integrated quantum photonics material platform based on the ultrathin TD plasmonic films. Acknowledgements: U.S. National Science Foundation Award No. DMR-1830874 (I.V.B.) References: [1] I.V.Bondarev, Annalen der Physik 2200331 (2022), DOI: 10.1002/andp.202200331. [2] A.Boltasseva and V.M.Shalaev, ACS Photonics 6, 1 (2019). [3] N.Rivera, I.Kaminer, B.Zhen, J.D.Joannopoulos, and M.Soljačić, Science 353, 263 (2016). [4] I.V.Bondarev, H.Mousavi, and V.M.Shalaev, Phys. Rev. Research 2, 013070 (2020). [5] D.Shah, M.Yang, Z.Kudyshev, X.Xu, V.M.Shalaev, I.V.Bondarev, and A.Boltasseva, Nano Lett. 22, 4622 (2022).
Conference Presentation
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Igor V. Bondarev "Single-photon emission near a transdimensional plasmonic plate", Proc. SPIE PC12647, Active Photonic Platforms (APP) 2023, PC126470D (4 October 2023); https://doi.org/10.1117/12.2675669
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KEYWORDS
Film thickness

Quantum plasmonics

Materials properties

Nanodiamonds

Passivation

Rayleigh scattering

Tin

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