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February 19, 2026Nano Letters0 citations

Enhancing the Purcell Factor and Stability of Nitrogen-Vacancy Centers Coupled to Plasmonic Nanocavities through Dielectric Encapsulation

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PCPeigang ChenYCYuheng ChenDSDemid Sychev

Key Points

  • This research investigates methods to enhance the stability and Purcell factor of nitrogen-vacancy centers coupled to plasmonic nanocavities.
  • Atomic layer deposition used for encapsulation
  • Extended emitter lifetime from three days to three months
  • Numerical simulations conducted to optimize dielectric environment
  • Purcell factor increased by shortening emitter lifetime by a factor of 1.5
  • Saturation intensity improved
  • Emission wavelength tunability enabled
  • Radiation directivity significantly enhanced by reducing substrate leakage

Abstract

Quantum emitters coupled to nanophotonic and plasmonic cavities are critical for advancing on-chip quantum photonics and serve as key elements for quantum information processing, communication, and computing. Plasmonic-enhanced single photon emitters, such as nitrogen-vacancy (NV) centers coupled to plasmonic nanopatch antennas (NPAs), demonstrate record-high Purcell enhancement, essential for improving photon quality and efficiency. However, plasmonic NPAs degrade rapidly after exposure to air, limiting their practical applicability. In this work, we demonstrate that atomic layer deposition of an Al 2 O 3 encapsulation layer on the NV-NPA system extends its lifetime from three days to over three months. Moreover, the encapsulation fine-tunes the dielectric environment, enhances the Purcell factor by shortening the emitter lifetime by a factor of 1.5, increases saturation intensity, enables emission wavelength tunability, and significantly improves radiation directivity by reducing substrate leakage. Numerical simulations highlight the critical role of optimizing the dielectric environment for plasmonic nanocavities in emerging quantum photonic applications.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/6996712d80e1323b05ec0338https://doi.org/10.1021/acs.nanolett.5c04975
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