English

Circular Dichroism without absorption in isolated chiral dielectric Mie particles

Optics 2026-03-17 v1

Abstract

We demonstrate that an effect phenomenologically analogous to circular dichroism can arise even for dielectric and isotropic chiral spherical particles. By analyzing the polarimetry of light scattered from a chiral, lossless microsphere illuminated with linearly polarized light, we show that the scattered light becomes nearly circularly polarized, exhibiting large, nonresonant values of the Stokes parameter S3S_3 for a broad range of visible frequencies. This phenomenon occurs only in the Mie regime, with the microsphere radius comparable to the wavelength, and provided that the scattered light is collected by a high-NA objective lens, including non-paraxial Fourier components. Altogether, our findings offer a theoretical framework and motivation for an experimental demonstration of a novel chiroptical effect with isolated dielectric particles, with potential applications in enantioselection and characterization of single microparticles, each and every one with its own chiral response.

Keywords

Cite

@article{arxiv.2510.08428,
  title  = {Circular Dichroism without absorption in isolated chiral dielectric Mie particles},
  author = {Rafael S. Dutra and Felipe A. Pinheiro and Diney S. Ether and Cyriaque Genet and Nathan B. Viana and Paulo A. Maia Neto},
  journal= {arXiv preprint arXiv:2510.08428},
  year   = {2026}
}

Comments

22 pages, 5 figures