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Open AccessJournal ArticleDOI

Integrated nano-optomechanical displacement sensor with ultrawide optical bandwidth

TLDR
A nanomechanical sensor with 80nm bandwidth, displacement imprecision of 45 fm/Hz 1/2 as well as a dynamic range greater than 30 nm with integrated photodetectors is presented.
Abstract
Optical read-out of motion is widely used in sensing applications. Recent developments in micro- and nano-optomechanical systems have given rise to on-chip mechanical sensing platforms, potentially leading to compact and integrated optical motion sensors. However, these systems typically exploit narrow spectral resonances and therefore require tuneable lasers with narrow linewidth and low spectral noise, which makes the integration of the read-out extremely challenging. Here, we report a step towards the practical application of nanomechanical sensors, by presenting a sensor with ultrawide (∼80 nm) optical bandwidth. It is based on a nanomechanical, three-dimensional directional coupler with integrated dual-channel waveguide photodiodes, and displays small displacement imprecision of only 45 fm/Hz1/2 as well as large dynamic range (>30 nm). The broad optical bandwidth releases the need for a tuneable laser and the on-chip photocurrent read-out replaces the external detector, opening the way to fully-integrated nanomechanical sensors.

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Citations
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Journal ArticleDOI

Triboelectric mechanical sensors—Progress and prospects

TL;DR: In this article, a review of recent progress in the development of triboelectric mechanical sensors for monitoring mechanical motion, mechanical vibration, mechanical pressure and mechanical tactile perception is presented.
Journal ArticleDOI

Progress of optomechanical micro/nano sensors: a review

TL;DR: Optomechanical sensing based on the coupling between mechanical motions and optical resonances has attracted huge interest in sensor applications due to its small footprint, high sensitivity, low density, and low power.
Journal ArticleDOI

InP membrane integrated photonics research

TL;DR: In this article, the concept of thin InP-based membrane is discussed and discussed the versatility of various technology approaches and reviews the recent advancement in this field, which has shown high potential in breaking the speed, energy and density bottlenecks in conventional photonic integration technologies.
Journal ArticleDOI

Design of an optomagnonic crystal: Towards optimal magnon-photon mode matching at the microscale

TL;DR: In this paper, an optomagnonic crystal consisting of a Faraday active magnetic dielectric was proposed, which was periodically patterned at the microscale and supported both photon and magnon modes.
References
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Journal ArticleDOI

Cavity Optomechanics: Back-Action at the Mesoscale

TL;DR: Recent experiments have reached a regime where the back-action of photons caused by radiation pressure can influence the optomechanical dynamics, giving rise to a host of long-anticipated phenomena.
Journal ArticleDOI

A high-resolution microchip optomechanical accelerometer

TL;DR: In this paper, an optomechanical accelerometer that makes use of ultrasensitive displacement readout using a photonic-crystal nanocavity monolithically integrated with a nanotethered test mass of high mechanical Q-factor is presented.
Journal ArticleDOI

A hybrid on-chip optomechanical transducer for ultrasensitive force measurements

TL;DR: An hybrid on-chip transducer in which a Si(3)N(4) nanomechanical beam is coupled to a disk-shaped optical resonator made of silica on a single chip is reported, which is particularly suited for the detection of very weak incoherent forces.
Journal ArticleDOI

Integrated nano-opto-electro-mechanical sensor for spectrometry and nanometrology

TL;DR: A nano-opto-electro-mechanical system where the functionalities of transduction, actuation and detection are fully integrated, resulting in an ultra-compact high-resolution spectrometer with a micrometer-scale footprint is presented.
MonographDOI

Phase Noise in Signal Sources

W. P. Robins
TL;DR: In this article, a thorough treatment of phase noise, its relationship to thermal noise and associated subjects such as frequency stability is provided, including the design of low-phase noise signal sources, including oscillators and synthesisers.
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