Design principles for photonic crystals based on plasmonic nanoparticle superlattices

Author:

Sun Lin,Lin Haixin,Kohlstedt Kevin L.,Schatz George C.ORCID,Mirkin Chad A.ORCID

Abstract

Photonic crystals have been widely studied due to their broad technological applications in lasers, sensors, optical telecommunications, and display devices. Typically, photonic crystals are periodic structures of touching dielectric materials with alternating high and low refractive indices, and to date, the variables of interest have focused primarily on crystal symmetry and the refractive indices of the constituent materials, primarily polymers and semiconductors. In contrast, finite difference time domain (FDTD) simulations suggest that plasmonic nanoparticle superlattices with spacer groups offer an alternative route to photonic crystals due to the controllable spacing of the nanoparticles and the high refractive index of the lattices, even far away from the plasmon frequency where losses are low. Herein, the stopband features of 13 Bravais lattices are characterized and compared, resulting in paradigm-shifting design principles for photonic crystals. Based on these design rules, a simple cubic structure with an ∼130-nm lattice parameter is predicted to have a broad photonic stopband, a property confirmed by synthesizing the structure via DNA programmable assembly and characterizing it by reflectance measurements. We show through simulation that a maximum reflectance of more than 0.99 can be achieved in these plasmonic photonic crystals by optimizing the nanoparticle composition and structural parameters.

Funder

DOD | USAF | AFMC | Air Force Office of Scientific Research

DOE | SC | Basic Energy Sciences

DOD | U.S. Air Force

National Science Foundation

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

Reference45 articles.

1. Joannopoulos JD Johnson SG Winn JN Meade RD (2008) Photonic Crystals: Molding the Flow of Light (Princeton Univ Press, Princeton).

2. A view of the future

3. Diamond-structured photonic crystals

4. A surface-emitting laser incorporating a high-index-contrast subwavelength grating;Huang;Nat Photonics,2007

5. From colour fingerprinting to the control of photoluminescence in elastic photonic crystals

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