Squeezing Photons into a Point-Like Space

Nano Lett. 2015 Jun 10;15(6):4102-7. doi: 10.1021/acs.nanolett.5b01204. Epub 2015 May 29.

Abstract

Confining photons in the smallest possible volume has long been an objective of the nanophotonics community. In this Letter, we propose and demonstrate a three-dimensional (3D) gap-plasmon antenna that enables extreme photon squeezing in a 3D fashion with a modal volume of 1.3 × 10(-7) λ(3) (∼4 × 10 × 10 nm(3)) and an intensity enhancement of 400 000. A three-dimensionally tapered 4 nm air-gap is formed at the center of a complementary nanodiabolo structure by ion-milling 100 nm-thick gold film along all three dimensions using proximal milling techniques. From a 4 nm-gap antenna, a nonlinear second-harmonic signal more than 27 000-times stronger than that from a 100 nm-gap antenna is observed. In addition, scanning cathodoluminescence images confirm unambiguous photon confinement in a resolution-limited area 20 × 20 nm(2) on top of the nano gap.

Keywords: 3D gap-plasmon antennas; 3D nanofabrications; Plasmonics; nano-optics.

Publication types

  • Research Support, Non-U.S. Gov't