Published July 31, 2023 | Version 1

Degenerate photons from a cryogenic spontaneous parametric down-conversion source

  • 1. Department of Physics & Institute for Photonic Quantum Systems, Paderborn University, Warburger Str. 100, 33098 Paderborn, Germany

Description

Dataset of the publication "Degenerate photons from a cryogenic spontaneous parametric down-conversion source", N. A. Lange, T. Schapeler, J. P. Höpker, M. Protte, and T. J. Bartley, https://doi.org/10.48550/arXiv.2303.17428 (2023).

 

Abstract:

We demonstrate the generation of degenerate photon pairs from spontaneous parametric down-conversion in titanium-indiffused waveguides in lithium niobate at cryogenic temperatures. Since the phase matching cannot be temperature tuned inside a cryostat, we rely on a precise empirical model of the refractive indices when fabricating a fixed poling period. We design the phase-matching properties of our periodic poling to enable signal and idler photons at 1559.3(6) nm and characterize the indistinguishability of our photons by performing a Hong-Ou-Mandel interference measurement. Despite the effects of photorefraction and pyroelectricity, which can locally alter the phase matching, we achieve cryogenic indistinguishable photons within 1.5 nm of our design wavelength. Our results verify sufficient understanding and control of the cryogenic nonlinear process, which has wider implications when combining quasi-phase-matched nonlinear optical processes with other cryogenic photonic quantum technologies, such as superconducting detectors.

Notes

We acknowledge financial support from the Deutsche Forschungsgemeinschaft (Grant No. 231447078–TRR 142) and the Bundesministerium für Bildung und Forschung (Grant No. 13N14911), as well as the European Union (ERC, Project QuESADILLA, 101042399). Views and opinions expressed are however those of the author(s) only and do not necessarily reflect those of the European Union or the European Research Council. Neither the European Union nor the granting authority can be held responsible for them.

Files

Fig1a_MeasData.txt

Files (88.4 kB)

Name Size Download all
md5:92055715f8c1ca35372e09373b704147
966 Bytes Preview Download
md5:58626e5917541081355aeb4a1e517b49
1.9 kB Preview Download
md5:40b56ddad7396d18e86ce7e59d6fa257
1.9 kB Preview Download
md5:1dbe4bb10037fce9cbf01e6beaa38ce2
9.7 kB Preview Download
md5:a3cc21320023ecf7baa8b20fc4eb2953
6.5 kB Preview Download
md5:e40185b094b5b01999ad4d90b5446d15
1.3 kB Preview Download
md5:c754a93a13345e4051d800b2ce3c134f
18.8 kB Preview Download
md5:e409e42117f134de2260665cf46c6e3d
5.5 kB Preview Download
md5:4df92ff624bec12a9acddea6a7ab4ef9
2.8 kB Preview Download
md5:866a48ec7c0b579dc3d2a05bc0fbe592
6.3 kB Preview Download
md5:6c5699d47ef6728072f11a02687b7ac2
31.1 kB Preview Download
md5:c35d7386484e083de2fe3f24a5dd3a95
1.3 kB Preview Download
md5:c09fc4fd795c4d758da9d75532fb6a3c
499 Bytes Preview Download

Additional details

Related works

Is supplement to
Journal article: arXiv:2303.17428 (arXiv)
Journal article: 10.1103/PhysRevA.108.023701 (DOI)