Photonic-Crystal Exciton-Polaritons in Monolayer Semiconductors

Abstract

Semiconductor microcavity polaritons, formed via strong exciton-photon coupling, provide a quantum many-body system on a chip, featuring rich physics phenomena for better photonic technology. However, conventional polariton cavities are bulky, difficult to integrate, and inflexible for mode control, especially for room-temperature materials. Here we demonstrate sub-wavelength-thick, one-dimensional photonic crystals as a designable, compact, and practical platform for strong coupling with atomically thin van der Waals crystals. Polariton dispersions and mode anti-crossings are measured up to room temperature. Non-radiative decay to dark excitons is suppressed due to polariton enhancement of the radiative decay. Unusual features, including highly anisotropic dispersions and adjustable Fano resonances in reflectance, may facilitate high temperature polariton condensation in variable dimensions. Combining slab photonic crystals and van der Waals crystals in the strong coupling regime allows unprecedented engineering flexibility for exploring novel polariton phenomena and device concepts.

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Document Details

Document Type
Technical Report
Publication Date
Feb 19, 2018
Accession Number
AD1072801

Entities

People

  • Emanuel Tutuc
  • G. William Burg
  • Hui Deng
  • Long Zhang
  • Rahul Gogna

Organizations

  • University of Michigan

Tags

Communities of Interest

  • Advanced Electronics

DTIC Thesaurus Topics

  • Ceramic Materials
  • Crystal Lattice Vibrations
  • Distributed Bragg Reflectors
  • Exciton Polaritons
  • Materials
  • Materials Processing
  • Materials Science
  • Optical Properties
  • Optics
  • Photonic Crystals
  • Photons
  • Polaritons
  • Quantum Yields
  • Reflection
  • Scattering
  • Semiconductors
  • Two Dimensional

Fields of Study

  • Physics

Readers

  • Quantum Dot Semiconductor Device Photonics and Graphene Optoelectronic Materials and THz Physics.

Technology Areas

  • Microelectronics
  • Microelectronics - Graphene
  • Quantum Computing