4.3 Article

Ultrafast All-Optical Polarization Switching Based on Composite Metasurfaces with Gratings and an Epsilon-Near-Zero Film

期刊

ADVANCED PHOTONICS RESEARCH
卷 2, 期 4, 页码 -

出版社

WILEY
DOI: 10.1002/adpr.202000167

关键词

all-optical nonlinearity; all-optical polarization switching; epsilon-near-zero photonics; ultrafast photonics

资金

  1. National Key Research and Development Program of China [2018YFB2200403, 2018YFA0704404]
  2. National Natural Science Foundation of China [61775003, 11734001, 91950204, 11527901, 91850111]
  3. Beijing Municipal Science & Technology Commission [Z191100007219001]

向作者/读者索取更多资源

An all-optical polarization switching device with high speed, broadband, and diverse tunability has been developed, showing promising applications in next-generation high-performance signal processing systems.
Active control of light polarization is necessary for the development of laser physics, optical communications, and also the molecular dynamics. Conventional polarization control methods suffer from low speed, and the existing all-optical switching based on nonlinear materials solely has a lot of conducting restrictions, impeding its practical utilizations. Herein, an all-optical polarization switching in the near-IR range, composed of the plasmonic gratings deposited on an indium tin oxide (ITO) film with epsilon-near-zero response, is realized. A sub-1ps response speed and the 19 degrees rotation of the polarization ellipse are determined with the excitation power of 1.37GWcm(-2). The device is demonstrated to output the varied signal with tuning the incident polarization and intensity in a spectral range from 1200 to 1500nm. The ultrafast processing speed, broadband, and diverse tunability ensure the designed device a promising and necessary element for practically integrating into the next-generation signal-processing systems with high performance and large capacity.

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