English

Constraint-free wavelength conversion supported by giant optical refraction in a 3D perovskite supercrystal

Optics 2021-03-11 v3 Materials Science

Abstract

Nonlinear response in a material increases with its index of refraction as n4n^4. Commonly, nn \sim 1 so that diffraction, dispersion, and chromatic walk-off limit nonlinear scattering. Ferroelectric crystals with a periodic 3D polarization structure overcome some of these constraints through versatile Cherenkov and quasi-phase-matching mechanisms. Three-dimensional self-structuring can also lead to a giant optical refraction. Here, we perform second-harmonic-generation experiments in KTN:Li in conditions of giant broadband refraction. Enhanced response causes wavelength conversion to occur in the form of bulk Cherenkov radiation without diffraction and chromatic walk-off, even in the presence of strong wave-vector mismatch and highly focused beams. The process occurs with a wide spectral acceptance of more than 100 nm in the near infrared spectrum, an ultra-wide angular acceptance of up to ±40\pm 40^{\circ}, with no polarization selectivity, and can be tuned to allow bulk supercontinuum generation. Results pave the way to highly efficient and adaptable nonlinear optical devices with the promise of single-photon-to-single-photon nonlinear optics.

Keywords

Cite

@article{arxiv.2003.00700,
  title  = {Constraint-free wavelength conversion supported by giant optical refraction in a 3D perovskite supercrystal},
  author = {Ludovica Falsi and Luca Tartara and Fabrizio Di Mei and Mariano Flammini and Jacopo Parravicini and Davide Pierangeli and Gianbattista Parravicini and Feifei Xin and Paolo Di Porto and Aharon J. Agranat and Eugenio DelRe},
  journal= {arXiv preprint arXiv:2003.00700},
  year   = {2021}
}

Comments

10 pages, 5 figures