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January 24, 2026JETP Letters0 citationsOpen Access

Linear Array of Blue-Detuned Optical Nanotraps in a Dielectric Nanohole

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VKV. V. Klimov

Key Points

  • The research aims to develop a linear array of optical nanotraps for manipulating neutral atoms at microscale.
  • Conceptual framework development for optical nanotraps.
  • Analysis of the transversality of plane waves in a cylindrical nanohole.
  • Calculations of trap sizes, periods, and effective depths.
  • Formation of a linear chain of dark traps with sizes under 50 nm.
  • Achieved trap period of less than 100 nm.
  • Effective trap depth exceeding 10 mK at an intensity of 10 kW/cm².

Abstract

We propose a theoretical concept for creating a linear array of dark optical nanotraps in a cylindrical nanohole in a high-refractive-index dielectric film. It is rigorously shown that due to breaking the transversality of plane waves in the nanohole region, a linear chain of deep 3D dark (blue-detuned) trap configurations for neutral atoms, with sizes of less than 50 nm, a period of less than 100 nm and an effective depth of more than 10 mK at an intensity of just 10 kW/cm 2 is formed in the nanohole. The predicted effect could open up new directions in the field of cold atom manipulation and quantum computing on neutral atoms.

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Cite This Study

V. V. Klimov (2025) studied this question.

synapsesocial.com/papers/6974616cbb9d90c67120b4c7https://doi.org/10.1134/s0021364025608681
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