Cryogenic Second-Harmonic Generation in Periodically Poled Lithium Niobate Waveguides

Moritz Bartnick, Matteo Santandrea, Jan Philipp Höpker, Frederik Thiele, Raimund Ricken, Viktor Quiring, Christof Eigner, Harald Herrmann, Christine Silberhorn, and Tim J. Bartley
Phys. Rev. Applied 15, 024028 – Published 11 February 2021
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Abstract

We demonstrate second-harmonic generation in a fiber-coupled periodically poled titanium in-diffused lithium niobate waveguide over the temperatures range from 292 to 4.4 K. We observe a reproducible shift in the phase-matched pump wavelength within the telecom band, which is at odds with the phase matching arising from existing models of the refractive indices in this temperature regime. We further investigate transient discontinuities while temperature cycling, which we attribute to the build-up and discharge of pyroelectric fields. Our results show that modifications of the Sellmeier coefficients for lithium niobate are required in the cryogenic temperature regime for our waveguides, but also establish titanium in-diffused waveguides in lithium niobate as a versatile nonlinear photonic integration platform compatible with cryogenic quantum technologies.

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  • Received 9 October 2020
  • Revised 8 December 2020
  • Accepted 4 January 2021

DOI:https://doi.org/10.1103/PhysRevApplied.15.024028

© 2021 American Physical Society

Physics Subject Headings (PhySH)

Atomic, Molecular & Optical

Authors & Affiliations

Moritz Bartnick1,*, Matteo Santandrea2, Jan Philipp Höpker1, Frederik Thiele1, Raimund Ricken2, Viktor Quiring2, Christof Eigner2, Harald Herrmann2, Christine Silberhorn2, and Tim J. Bartley1

  • 1Department of Physics, Mesoscopic Quantum Optics, Paderborn University, Warburger Strasse 100, Paderborn 33098, Germany
  • 2Department of Physics, Integrated Quantum Optics, Paderborn University, Warburger Strasse 100, Paderborn 33098, Germany

  • *moritz.bartnick@uni-paderborn.de

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Issue

Vol. 15, Iss. 2 — February 2021

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