Dynamic Chiral Metasurfaces for Broadband Phase‐Gradient Holographic Displays

Author:

Naeem Taimoor12,Kim Joohoon3ORCID,Khaliq Hafiz Saad4,Seong Junhwa3,Chani Muhammad Tariq Saeed5,Tauqeer Tauseef1,Mehmood Muhammad Qasim1ORCID,Massoud Yehia4ORCID,Rho Junsuk3678ORCID

Affiliation:

1. MicroNano Lab Electrical Engineering Department Lahore 54600 Pakistan

2. Department of Electrical and Computer Engineering COMSATS University Islamabad Lahore 54000 Pakistan

3. Department of Mechanical Engineering Pohang University of Science and Technology (POSTECH) Pohang 37673 Republic of Korea

4. Innovative Technologies Laboratories (ITL) King Abdullah University of Science and Technology (KAUST) Thuwal 23955 Saudi Arabia

5. Center of Excellence for Advanced Materials Research King Abdulaziz University Jeddah 21589 Saudi Arabia

6. Department of Chemical Engineering Pohang University of Science and Technology (POSTECH) Pohang 37673 Republic of Korea

7. POSCO‐POSTECH‐RIST Convergence Research Center for Flat Optics and Metaphotonics Pohang 37673 Republic of Korea

8. National Institute of Nanomaterials Technology (NINT) Pohang 37673 Republic of Korea

Abstract

AbstractNext‐generation holographic displays have promising applications in medical science, augmented/virtual reality, smart security, data encryption, etc. Although metasurfaces emerged as the suitable choice to provide compact holographic displays, multifunctionality in metasurfaces at broadband optical wavelengths is inevitable for the abovementioned applications. Here, a metasurface is demonstrated based on chiral structures to introduce multifunctionality in terms of multiple wavefront information depending upon the polarization of incident light. The proposed metasurface integrated with a liquid crystal (LC) provides fast switching and dynamic optical response at broadband visible wavelengths in transmission mode. To avoid the phase distortion in multiple wavefront information embedded into a single planar metasurface, chiral z‐shaped meta‐atoms are used to provide high diffraction efficiency and phase chirality response for circularly polarized (CP) light illuminations. The phase mask of holographic information is encoded into the metasurface using a combination of dynamic and geometric phase modulation techniques. The experimental validation of the designed metasurface is performed to reproduce the spin‐dependent‐specific information at broadband visible wavelengths for changing the polarization of incident light. This research may pave the way toward designing highly efficient multifunctional metadevices to produce next‐generation holographic displays for promising applications in healthcare, media, smart security, and data encryption.

Funder

National Research Foundation of Korea

Pohang University of Science and Technology

King Abdullah University of Science and Technology

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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