4.4 Article

Wavelength-Scale Photonic Space Switch Proof-Of-Concept Based on Photonic Hook Effect

期刊

ANNALEN DER PHYSIK
卷 533, 期 9, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/andp.202100192

关键词

all-optical switches; dielectric Janus particles; mesoscale; photonic hooks

资金

  1. Russian Foundation for Basic Research [21-57-10001]
  2. TPU development program
  3. Ministry of Science and High Education of Russian Federation
  4. Royal Society International Exchanges Cost Share scheme, UK [IEC\R2\202040]

向作者/读者索取更多资源

A new wavelength-scaled all-optical two-channel switch based on the photonic hook phenomenon is proposed and demonstrated, showing promising potential for optical switching in modern optoelectronics and miniature on-chip devices. By utilizing numerical simulations and dielectric microstructures, the switch achieves optical isolation close to 20 dB at wavelengths of 1.5 and 1.9 μm, without the need for micromechanical devices or non-linear materials.
The proof-of-concept of a new wavelength-scaled all-optical two-channel switch based on the photonic hook phenomenon is proposed and demonstrated. By means of the numerical finite-difference time-domain simulations, several prototypes of such devices are considered based on dielectric microstructures with broken symmetry of both geometric shape and optical properties without the use of micromechanical devices or non-linear materials. Due to the unique property of the photonic hook to change its curvature depending on the optical wavelength, the proposed switch is a promising candidate for the implementation of optical switching in modern optoelectronics and miniature on-chip devices. Optical isolation that is close to 20 dB is discovered at the wavelengths of 1.5 and 1.9 mu m for a dielectric Janus microbar-based switch with linear dimensions of about (6 lambda)(3) (lambda is the wavelength of the incident plane wave).

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