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Highly efficient and ultra-broadband graphene oxide ultrathin lenses with three-dimensional subwavelength focusing

机译:高效率和超宽带氧化石墨烯超薄透镜,具有三维亚波长聚焦功能

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摘要

Nanometric flat lenses with three-dimensional subwavelength focusing are indispensable in miniaturized optical systems. However, they are fundamentally challenging to achieve because of the difficulties in accurately controlling the optical wavefront by a film with nanometric thickness. Based on the unique and giant refractive index and absorption modulations of the sprayable graphene oxide thin film during its laser reduction process, we demonstrate a graphene oxide ultrathin (∼200 nm) flat lens that shows far-field three-dimensional subwavelength focusing (λ3/5) with an absolute focusing efficiency of >32% for a broad wavelength range from 400 to 1,500 nm. Our flexible graphene oxide lenses are mechanically robust and maintain excellent focusing properties under high stress. The simple and scalable fabrication approach enables wide potential applications in on-chip nanophotonics. The wavefront shaping concept opens up new avenues for easily accessible, highly precise and efficient optical beam manipulations with a flexible and integratable planar graphene oxide ultrathin film.
机译:具有三维亚波长聚焦的纳米平面透镜在小型光学系统中必不可少。然而,由于难以通过具有纳米厚度的膜精确地控制光波前,因此实现它们在根本上具有挑战性。基于可喷涂氧化石墨烯薄膜在其激光还原过程中独特且巨大的折射率和吸收调制,我们展示了一种氧化石墨烯超薄(〜200 nm)平面透镜,该透镜可显示远场三维亚波长聚焦(λ3/ 5)在400至1,500 nm的宽波长范围内,绝对聚焦效率> 32%。我们的柔性氧化石墨烯透镜机械坚固,在高应力下仍保持出色的聚焦性能。简单且可扩展的制造方法可实现片上纳米光子学的广泛应用。波前整形概念为柔性和可集成的平面氧化石墨烯超薄薄膜提供了易于使用,高精度和高效光束操纵的新途径。

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