4.6 Article

Low-Power Absorption Saturation in Semiconductor Metasurfaces

期刊

ACS PHOTONICS
卷 6, 期 11, 页码 2797-2806

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsphotonics.9b00842

关键词

absorption saturation; semiconductor metasurfaces; Mie-type resonance; I-scan

资金

  1. Ministry of Science and Higher Education of Russian Federation [N 14.W03.31.0008]
  2. Ministry of Science and Higher Education of Russian Federation (RFBR) [N 18-29-20097]
  3. Russian Science Foundation [N 18-12-00475]
  4. German Research Foundation through the Emmy Noether Programme [STA 1426/2-1]
  5. MSU Quantum Technology Center
  6. U.S. Department of Energy, Office of Basic Energy Sciences, Division of Materials Sciences and Engineering
  7. U.S. Department of Energy's National Nuclear Security Administration [DE -NA-0003525]

向作者/读者索取更多资源

Saturable optical elements lie at the cornerstone of many modern optical systems. Regularly patterned quasi-planar nanostructures-metasurfaces-are known to facilitate nonlinear optical processes. Such subwavelength semiconductor nanostructures can potentially serve as saturable components. Here we report on the intensity-dependent reflectance of femtosecond laser pulses from semiconductor metasurfaces with Mie-type modes, caused by the absorption saturation. Arrays of GaAs nanocylinders with magnetic dipole resonances in the spectral vicinity of the GaAs bandgap demonstrate a reduced saturation intensity and increased self-modulation efficiency, an order of magnitude higher than bulk GaAs or unstructured GaAs films. By contrast, the reflection modulation is shown to be negligible in the CW regime for the same average intensities, indicating that the process is not the result of temperature effects. Our work provides a novel idea for low-power saturable elements based on nonthermal nature of saturation. We conclude by devising a high-quality metasurface that can be used, in theory, to further reduce the saturation fluence below 50 nJ/cm(2).

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