Down-converted photon pairs in a high-Q silicon nitride microresonator

B Bohan Li Z Zhiquan Yuan J James Williams W Warren Jin A Adrian Beckert T Tian Xie J Joel Guo A Avi Feshali M Mario Paniccia A Andrei Faraon J John Bowers A Alireza Marandi K Kerry Vahala

Abstract

Abstract Entangled photon pairs from spontaneous parametric down-conversion (SPDC)1 are central to many quantum applications2–6. SPDC is typically performed in non-centrosymmetric systems7 with an inherent second-order nonlinearity (χ (2))8–10. We demonstrate strong narrowband SPDC with an on-chip rate of 0.8 million pairs per second in Si3N4. Si3N4 is the pre-eminent material for photonic integration and also exhibits the lowest waveguide loss (which is essential for integrated quantum circuits). However, being amorphous, silicon nitride lacks an intrinsic χ (2), which limits its role in photonic quantum devices. We enabled SPDC in Si3N4 by combining strong light-field enhancement inside a high optical Q-factor microcavity with an optically induced space-charge field. We present narrowband photon pairs with a high spectral brightness. The quantum nature of the down-converted photon pairs is verified through coincidence measurements. This light source, based on Si3N4 integrated photonics technology, unlocks new avenues for quantum systems on a chip.

Article Details

Journal Nature
Volume / Issue Vol. 639, Issue 8056
Published March 27, 2025
Pages 922-927
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (13)

B

Bohan Li

Z

Zhiquan Yuan

J

James Williams

W

Warren Jin

A

Adrian Beckert

T

Tian Xie

J

Joel Guo

A

Avi Feshali

M

Mario Paniccia

A

Andrei Faraon

J

John Bowers

A

Alireza Marandi

K

Kerry Vahala