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Efficient manipulations of circularly polarized terahertz waves with transmissive metasurfaces 被引量:9

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摘要 The unrestricted control of circularly polarized(CP)terahertz(THz)waves is important in science and applications,but conventional THz devices suffer from issues of bulky size and low efficiency.Although Pancharatnam-Berry(PB)metasurfaces have shown strong capabilities to control CP waves,transmission-mode PB devices realized in the THz regime are less efficient,limiting their applications in practice.Here,based on Jones matrix analysis,we design a trilayer structure(thickness of ~λ/5)and experimentally demonstrate that the structure can serve as a highly efficient transmissive meta-atom(relative efficiency of ~90%)to build PB metadevices for manipulating CP THz waves.Two ultrathin THz metadevices are fabricated and experimentally characterized with a z-scan THz imaging system.The first device can realize a photonic spin Hall effect with an experimentally demonstrated relative efficiency of ~90%,whereas the second device can generate a high-quality background-free CP Bessel beam with measured longitudinal and transverse field patterns that exhibit the nondiffracting characteristics of a Bessel beam.All the experimental results are in excellent agreement with full-wave simulations.Our results pave the way to freely manipulate CP THz beams,laying a solid basis for future applications such as biomolecular control and THz signal transportation.
出处 《Light(Science & Applications)》 SCIE EI CAS CSCD 2019年第1期1033-1041,共9页 光(科学与应用)(英文版)
基金 funded by the National Key Research and Development Program of China(no.2017YFA0700201 and no.2017YFA0303504) National Natural Science Foundation of China(no.11734007,no.11474057,no.11674068,no.11474206,no.11774246,no.91850101,and no.11874118) Natural Science Foundation of Shanghai(no.16ZR1445200,no.16JC1403100,and no.18ZR1403400).
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