AI Article Synopsis

  • Active control of polarization states of electromagnetic waves is important for various fields like information processing and telecommunications, but traditional methods often require complex optical setups.
  • The researchers developed a method using a chiral metamaterial and graphene to electrically tune the polarization of terahertz waves, allowing for significant modulation without affecting the opposite polarization.
  • This new approach enables effective polarization control through three accessible coupling regimes influenced by electrical adjustments to the graphene, achieving modulation depths exceeding 99% with low voltage.

Article Abstract

Active control of polarization states of electromagnetic waves is highly desirable because of its diverse applications in information processing, telecommunications, and spectroscopy. However, despite the recent advances using artificial materials, most active polarization control schemes require optical stimuli necessitating complex optical setups. We experimentally demonstrate an alternative-direct electrical tuning of the polarization state of terahertz waves. Combining a chiral metamaterial with a gated single-layer sheet of graphene, we show that transmission of a terahertz wave with one circular polarization can be electrically controlled without affecting that of the other circular polarization, leading to large-intensity modulation depths (>99%) with a low gate voltage. This effective control of polarization is made possible by the full accessibility of three coupling regimes, that is, underdamped, critically damped, and overdamped regimes by electrical control of the graphene properties.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5621972PMC
http://dx.doi.org/10.1126/sciadv.1701377DOI Listing

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