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Controlling the broadband enhanced light chirality with L-shaped dielectric metamaterials

Author

Listed:
  • Ufuk Kilic

    (University of Nebraska-Lincoln)

  • Matthew Hilfiker

    (University of Nebraska-Lincoln
    Onto Innovation Inc.)

  • Shawn Wimer

    (University of Nebraska-Lincoln)

  • Alexander Ruder

    (University of Nebraska-Lincoln)

  • Eva Schubert

    (University of Nebraska-Lincoln)

  • Mathias Schubert

    (University of Nebraska-Lincoln
    Lund University)

  • Christos Argyropoulos

    (The Pennsylvania State University)

Abstract

The inherently weak chiroptical responses of natural materials limit their usage for controlling and enhancing chiral light-matter interactions. Recently, several nanostructures with subwavelength scale dimensions were demonstrated, mainly due to the advent of nanofabrication technologies, as a potential alternative to efficiently enhance chirality. However, the intrinsic lossy nature of metals and the inherent narrowband response of dielectric planar thin films or metasurface structures pose severe limitations toward the practical realization of broadband and tailorable chiral systems. Here, we tackle these problems by designing all-dielectric silicon-based L-shaped optical metamaterials based on tilted nanopillars that exhibit broadband and enhanced chiroptical response in transmission operation. We use an emerging bottom-up fabrication approach, named glancing angle deposition, to assemble these dielectric metamaterials on a wafer scale. The reported strong chirality and optical anisotropic properties are controllable in terms of both amplitude and operating frequency by simply varying the shape and dimensions of the nanopillars. The presented nanostructures can be used in a plethora of emerging nanophotonic applications, such as chiral sensors, polarization filters, and spin-locked nanowaveguides.

Suggested Citation

  • Ufuk Kilic & Matthew Hilfiker & Shawn Wimer & Alexander Ruder & Eva Schubert & Mathias Schubert & Christos Argyropoulos, 2024. "Controlling the broadband enhanced light chirality with L-shaped dielectric metamaterials," Nature Communications, Nature, vol. 15(1), pages 1-10, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-48051-4
    DOI: 10.1038/s41467-024-48051-4
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    References listed on IDEAS

    as
    1. Y. Zhao & M.A. Belkin & A. Alù, 2012. "Twisted optical metamaterials for planarized ultrathin broadband circular polarizers," Nature Communications, Nature, vol. 3(1), pages 1-7, January.
    2. Jichao Jia & Xue Cao & Xuekai Ma & Jianbo De & Jiannian Yao & Stefan Schumacher & Qing Liao & Hongbing Fu, 2023. "Circularly polarized electroluminescence from a single-crystal organic microcavity light-emitting diode based on photonic spin-orbit interactions," Nature Communications, Nature, vol. 14(1), pages 1-7, December.
    3. Tan Shi & Zi-Lan Deng & Guangzhou Geng & Xianzhi Zeng & Yixuan Zeng & Guangwei Hu & Adam Overvig & Junjie Li & Cheng-Wei Qiu & Andrea Alù & Yuri S. Kivshar & Xiangping Li, 2022. "Planar chiral metasurfaces with maximal and tunable chiroptical response driven by bound states in the continuum," Nature Communications, Nature, vol. 13(1), pages 1-8, December.
    4. Matthias Schulz & Jennifer Zablocki & Oliya S. Abdullaeva & Stefanie Brück & Frank Balzer & Arne Lützen & Oriol Arteaga & Manuela Schiek, 2018. "Giant intrinsic circular dichroism of prolinol-derived squaraine thin films," Nature Communications, Nature, vol. 9(1), pages 1-10, December.
    5. Lixiong Dai & Chloe M. Jones & Wesley Ting Kwok Chan & Tiffany A. Pham & Xiaoxi Ling & Eric M. Gale & Nicholas J. Rotile & William Chi-Shing Tai & Carolyn J. Anderson & Peter Caravan & Ga-Lai Law, 2018. "Chiral DOTA chelators as an improved platform for biomedical imaging and therapy applications," Nature Communications, Nature, vol. 9(1), pages 1-10, December.
    6. Hye-Eun Lee & Ryeong Myeong Kim & Hyo-Yong Ahn & Yoon Young Lee & Gi Hyun Byun & Sang Won Im & Jungho Mun & Junsuk Rho & Ki Tae Nam, 2020. "Cysteine-encoded chirality evolution in plasmonic rhombic dodecahedral gold nanoparticles," Nature Communications, Nature, vol. 11(1), pages 1-10, December.
    7. Hye-Eun Lee & Hyo-Yong Ahn & Jungho Mun & Yoon Young Lee & Minkyung Kim & Nam Heon Cho & Kiseok Chang & Wook Sung Kim & Junsuk Rho & Ki Tae Nam, 2018. "Amino-acid- and peptide-directed synthesis of chiral plasmonic gold nanoparticles," Nature, Nature, vol. 556(7701), pages 360-365, April.
    8. Tetsuo Kan & Akihiro Isozaki & Natsuki Kanda & Natsuki Nemoto & Kuniaki Konishi & Hidetoshi Takahashi & Makoto Kuwata-Gonokami & Kiyoshi Matsumoto & Isao Shimoyama, 2015. "Enantiomeric switching of chiral metamaterial for terahertz polarization modulation employing vertically deformable MEMS spirals," Nature Communications, Nature, vol. 6(1), pages 1-7, December.
    9. Guankui Long & Giorgio Adamo & Jingyi Tian & Maciej Klein & Harish N. S. Krishnamoorthy & Elena Feltri & Hebin Wang & Cesare Soci, 2022. "Perovskite metasurfaces with large superstructural chirality," Nature Communications, Nature, vol. 13(1), pages 1-8, December.
    10. Peter Banzer & Paweł Woźniak & Uwe Mick & Israel De Leon & Robert W. Boyd, 2016. "Chiral optical response of planar and symmetric nanotrimers enabled by heteromaterial selection," Nature Communications, Nature, vol. 7(1), pages 1-9, December.
    11. Qingbin Fan & Weizhu Xu & Xuemei Hu & Wenqi Zhu & Tao Yue & Feng Yan & Peicheng Lin & Lu Chen & Junyeob Song & Henri J. Lezec & Amit Agrawal & Yanqing Lu & Ting Xu, 2023. "Disordered metasurface enabled single-shot full-Stokes polarization imaging leveraging weak dichroism," Nature Communications, Nature, vol. 14(1), pages 1-10, December.
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