Measurement accuracy in silicon photonic ring resonator thermometers: identifying and mitigating intrinsic impairments

Author:

Janz S.,Dedyulin S.,Xu D. X.ORCID,Vachon M.,Wang S.,Cheriton R.ORCID,Weber J.

Abstract

Silicon photonic ring resonator thermometers have been shown to provide temperature measurements with a 10 mK accuracy. In this work we identify and quantify the intrinsic on-chip impairments that may limit further improvement in temperature measurement accuracy. The impairments arise from optically induced changes in the waveguide effective index, and from back-reflections and scattering at defects and interfaces inside the ring cavity and along the path between light source and detector. These impairments are characterized for 220 × 500nm Si waveguide rings by experimental measurement in a calibrated temperature bath and by phenomenological models of ring response. At different optical power levels both positive and negative light induced resonance shifts are observed. For a ring with L = 100µm cavity length, the self-heating induced resonance red shift can alter the temperature reading by 200 mK at 1mW incident power, while a small blue shift is observed below 100 µW. The effect of self-heating is shown to be effectively suppressed by choosing longer ring cavities. Scattering and back-reflections often produce split and distorted resonance line shapes. Although these distortions can vary with resonance order, they are almost completely invariant with temperature for a given resonance and do not lead to measurement errors in themselves. The effect of line shape distortions can largely be mitigated by tracking only selected resonance orders with negligible shape distortion, and by measuring the resonance minimum wavelength directly, rather than attempting to fit the entire resonance line shape. The results demonstrate the temperature error due to these impairments can be limited to below the 3 mK level through appropriate design choices and measurement procedures.

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. En route to a practical ring-resonator thermometer with an uncertainty of 1 mK;SPIE Future Sensing Technologies 2024;2024-05-28

2. Development and Research of a Monoblock Ring Confocal Resonator;2024 Photonics & Electromagnetics Research Symposium (PIERS);2024-04-21

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