Do different kinds of photon-pair sources have the same indistinguishability in quantum silicon photonics?

Fuente: arXiv
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Main Authors: Lee, Jong-Moo, Baldazzi, Alessio, Sanna, Matteo, Azzini, Stefano, Ahn, Joon Tae, Lee, Myung Lae, Sohn, Young-Ik, Pavesi, Lorenzo
Format: Preprint
Published: 2023
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author Lee, Jong-Moo
Baldazzi, Alessio
Sanna, Matteo
Azzini, Stefano
Ahn, Joon Tae
Lee, Myung Lae
Sohn, Young-Ik
Pavesi, Lorenzo
author_facet Lee, Jong-Moo
Baldazzi, Alessio
Sanna, Matteo
Azzini, Stefano
Ahn, Joon Tae
Lee, Myung Lae
Sohn, Young-Ik
Pavesi, Lorenzo
contents In the same silicon photonic integrated circuit, we compare two types of integrated degenerate photon-pair sources (microring resonators or waveguides) by means of Hong-Ou-Mandel (HOM) interference experiments. Two nominally identical microring resonators are coupled to two nominally identical waveguides which form the arms of a Mach-Zehnder interferometer. This is pumped by two lasers at two different wavelengths to generate, by spontaneous four-wave mixing, degenerate photon pairs. In particular, the microring resonators can be thermally tuned in or out of resonance with the pump wavelengths, thus choosing either the microring resonators or the waveguides as photon-pair sources, respectively. In this way, an on-chip HOM visibility of 94% with microring resonators and 99% with straight waveguides is measured upon filtering. We compare our experimental results with theoretical simulations of the joint spectral intensity and the purity of the degenerate photon pairs. We verify that the visibility is connected to the sources' indistinguishability, which can be quantified by the overlap between the joint spectral amplitudes (JSA) of the photon pairs generated by the two sources. We estimate a JSAs overlap of 98% with waveguides and 89% with microring resonators.
format Preprint
id arxiv_https___arxiv_org_abs_2305_10066
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Do different kinds of photon-pair sources have the same indistinguishability in quantum silicon photonics?
Lee, Jong-Moo
Baldazzi, Alessio
Sanna, Matteo
Azzini, Stefano
Ahn, Joon Tae
Lee, Myung Lae
Sohn, Young-Ik
Pavesi, Lorenzo
Quantum Physics
Optics
In the same silicon photonic integrated circuit, we compare two types of integrated degenerate photon-pair sources (microring resonators or waveguides) by means of Hong-Ou-Mandel (HOM) interference experiments. Two nominally identical microring resonators are coupled to two nominally identical waveguides which form the arms of a Mach-Zehnder interferometer. This is pumped by two lasers at two different wavelengths to generate, by spontaneous four-wave mixing, degenerate photon pairs. In particular, the microring resonators can be thermally tuned in or out of resonance with the pump wavelengths, thus choosing either the microring resonators or the waveguides as photon-pair sources, respectively. In this way, an on-chip HOM visibility of 94% with microring resonators and 99% with straight waveguides is measured upon filtering. We compare our experimental results with theoretical simulations of the joint spectral intensity and the purity of the degenerate photon pairs. We verify that the visibility is connected to the sources' indistinguishability, which can be quantified by the overlap between the joint spectral amplitudes (JSA) of the photon pairs generated by the two sources. We estimate a JSAs overlap of 98% with waveguides and 89% with microring resonators.
title Do different kinds of photon-pair sources have the same indistinguishability in quantum silicon photonics?
topic Quantum Physics
Optics
url https://arxiv.org/abs/2305.10066