English

Bloch Oscillations of Hybrid Light-Matter Particles in a Waveguide Array

Mesoscale and Nanoscale Physics 2024-02-22 v1

Abstract

Bloch oscillations are a phenomenon well known from quantum mechanics where electrons in a lattice experience an oscillatory motion in the presence of an electric field gradient. Here, we report on Bloch oscillations of hybrid light-matter particles, called exciton-polaritons, being confined in an array of coupled microcavity waveguides. To this end, we carefully design the waveguides, widths and their mutual couplings such that a constant energy gradient is induced perpendicular to the direction of motion of the propagating exciton-polaritons. This technique allows us to directly observe and study Bloch oscillations in real- and momentum-space. Furthermore, we support our experimental findings by numerical simulations based on a modified Gross-Pitaevskii approach. Our work provides an important transfer of basic concepts of quantum mechanics to integrated solid state devices, using quantum fluids of light.

Keywords

Cite

@article{arxiv.2012.14281,
  title  = {Bloch Oscillations of Hybrid Light-Matter Particles in a Waveguide Array},
  author = {Johannes Beierlein and Oleg. A. Egorov and Tristan H. Harder and Philipp Gagel and Monika Emmerling and Christian Schneider and Sven Höfling and Ulf Peschel and Sebastian Klembt},
  journal= {arXiv preprint arXiv:2012.14281},
  year   = {2024}
}

Comments

8 pages, 5 figures

R2 v1 2026-06-23T21:29:40.515Z