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Measurement of Squeezed Vacuum Based on Si3N4 Photonic Ring Molecules
會議論文

Measurement of Squeezed Vacuum Based on Si3N4 Photonic Ring Molecules

Cheng-Ting Liao, Zi-Hao Shi, Po-Han Wang, Chien-Ming Wu, Ray-Kuang Lee 和 Ming-Chang M. Lee
IEEE/LEOS International Conference on Optical MEMS and Nanophotonics (Online), 頁碼.1-2
IEEE
2025 International Conference on Optical MEMS and Nanophotonics (OMN) (Chiangmai, Thailand, 13/07/2025–18/07/2025)
13/07/2025
Web of Science ID: WOS:001582779000018

摘要

integrated photonics micro-ring resonator Optical mixing Optical resonators Optical squeezing Optical variables measurement Periodic structures Pollution measurement quantum optics Resonators Silicon squeezed light Structural rings System-on-chip
We report our work on the development of an on-chip squeezer for the generation of single-mode squeezed vacuum (SQV) light. The integrated squeezer is resonator-based, made up of two coupled Si 3 N 4 micro-ring resonators (MRR). Such structure, often coined as photonic ring molecules, is designed to suppress the unwanted nonlinear processes which can cause excess noises to contaminate the single-mode squeezed light generated via degenerate four-wave mixing (DG-FWM). Through such an integrated Si 3 N 4 squeezer, we generated SQV light showing a directly measured squeezing (anti-squeezing) level of −0.67 dB (2 dB), corresponding to an on-chip squeezing (anti-squeezing) level of −3.36 dB (5 dB).

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