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Open AccessJournal ArticleDOI

Recent advances in miniaturized optical gyroscopes

TLDR
In this article, the gyroscope-on-a-chip (GOS) sensor is presented, which is a novel sensor at the infantile stage, whose optical components are monolithically integrated on a single indium phosphide chip, and a new ultra high Q ring resonator for gyro applications with a configuration including a 1D photonic crystal in the resonant path.
Abstract
Low-cost chip-scale optoelectronic gyroscopes having a resolution ≤ 10 °/h and a good reliability also in harsh environments could have a strong impact on the medium/high performance gyro market, which is currently dominated by well-established bulk optical angular velocity sensors. The R&D activity aiming at the demonstration of those miniaturized sensors is crucial for aerospace/defense industry, and thus it is attracting an increasing research effort and notably funds. In this paper the recent technological advances on the compact optoelectronic gyroscopes with low weight and high energy saving are reviewed. Attention is paid to both the so-called gyroscope-on-a-chip, which is a novel sensor, at the infantile stage, whose optical components are monolithically integrated on a single indium phosphide chip, and to a new ultra-high Q ring resonator for gyro applications with a configuration including a 1D photonic crystal in the resonant path. The emerging field of the gyros based on passive ring cavities, which have already shown performance comparable with that of optical fiber gyros, is also discussed.

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Citations
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Journal ArticleDOI

Microresonator Brillouin gyroscope

TL;DR: In this paper, a chip-based, micro-optical gyroscope is demonstrated that uses counterpropagating Brillouin lasers to measure rotation as a Sagnac-induced frequency shift.
Journal ArticleDOI

Probing the loss origins of ultra-smooth $\mathrm{Si_3N_4}$ integrated photonic waveguides

TL;DR: In this paper, the authors demonstrate the fabrication of silicon nitride waveguides with unprecedentedly smooth sidewalls and tight confinement with record low propagation losses, which is achieved by combining the photonic Damascene process with a novel reflow process, which reduces etching roughness.
Journal ArticleDOI

Photonic Damascene Process for Low-Loss, High-Confinement Silicon Nitride Waveguides

TL;DR: In this paper, the photonic Damascene process was used for fabrication of high-confinement and low-loss silicon nitride waveguides with high attenuation of 5.5 dB/m.
Journal ArticleDOI

Earth rotation measured by a chip-scale ring laser gyroscope

TL;DR: In this article, a planar Sagnac gyroscope based on Brillouin ring laser on a silicon chip is presented, with an amplitude sensitivity as small as 5'deg'h−1 for a sinusoidal rotation.
Journal ArticleDOI

A High- $Q$ InP Resonant Angular Velocity Sensor for a Monolithically Integrated Optical Gyroscope

TL;DR: In this paper, the design, fabrication, and optical characterization of the sensing element of a photonic InP-based gyroscope intended for applications in the field of aerospace and defense are reported.
References
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Journal ArticleDOI

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TL;DR: In this paper, the authors present an overview of how inertial sensor technology is applied in current applications and how it is expected to be applied in near and far-term applications, namely interferometric fiber-optic gyros, micro-mechanical gyros and accelerometers and micro-optical sensors.
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TL;DR: A review of active and passive ring laser devices is given in this paper, with special emphasis given to the problems associated with the achievement of greater sensitivity and stability with respect to the ring laser gyroscope.
Journal ArticleDOI

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TL;DR: In this paper, a new method of measuring inertial rotation is presented based on the use of a passive ring resonator as the rotation sensing element and an external laser for measuring the difference between the clockwise and counterclockwise lengths of the resonator.
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