Second-harmonic generation in Mie-resonant dielectric nanoparticles made of noncentrosymmetric materials

Kristina Frizyuk, Irina Volkovskaya, Daria Smirnova, Alexander Poddubny, and Mihail Petrov
Phys. Rev. B 99, 075425 – Published 19 February 2019

Abstract

We develop a multipolar theory of second-harmonic generation (SHG) by dielectric nanoparticles made of noncentrosymmetric materials with bulk quadratic nonlinearity. We specifically analyze two regimes of optical excitation: illumination by a plane wave and single-mode excitation, when the laser pump drives the magnetic dipole mode only. Considering two classes of nonlinear crystalline solids (dielectric perovskite material and III-V semiconductor), we apply a symmetry approach to derive selection rules for the multipolar composition of the nonlinear radiation. The developed description can be used for design of efficient nonlinear optical nanoantennas with reconfigurable radiation characteristics.

  • Figure
  • Figure
  • Figure
  • Figure
  • Figure
  • Figure
  • Figure
4 More
  • Received 5 October 2018
  • Revised 30 January 2019

DOI:https://doi.org/10.1103/PhysRevB.99.075425

©2019 American Physical Society

Physics Subject Headings (PhySH)

General PhysicsCondensed Matter, Materials & Applied Physics

Authors & Affiliations

Kristina Frizyuk1, Irina Volkovskaya2, Daria Smirnova2, Alexander Poddubny1,3, and Mihail Petrov1

  • 1ITMO University, St. Petersburg 197101, Russia
  • 2Institute of Applied Physics, Russian Academy of Sciences, Nizhny Novgorod 603950, Russia
  • 3Ioffe Institute, St. Petersburg 194021, Russia

Article Text (Subscription Required)

Click to Expand

References (Subscription Required)

Click to Expand
Issue

Vol. 99, Iss. 7 — 15 February 2019

Reuse & Permissions
Access Options
Author publication services for translation and copyediting assistance advertisement

Authorization Required


×
×

Images

×

Sign up to receive regular email alerts from Physical Review B

Log In

Cancel
×

Search


Article Lookup

Paste a citation or DOI

Enter a citation
×