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