In recent years, there has been growing interest in optical sensors based on microcavities due to their advantages of size reduction and enhanced sensing capability. In this paper, we aim to give a comprehensive review of the field of photonic crystal nanobeam cavity-based sensors. The sensing principles and development of applications, such as refractive index sensing, nanoparticle sensing, optomechanical sensing, and temperature sensing, are summarized and highlighted. From the studies reported, it is demonstrated that photonic crystal nanobeam cavities, which provide excellent light confinement capability, ultra-small size, flexible on-chip design, and easy integration, offer promising platforms for a range of sensing applications
We present the design, fabrication, and photoluminescence experiment of InGaAsP photonic crystal slo...
Photonic crystal nanobeam cavities with high-quality factors are very sensitive to the changes of th...
While electronic device miniaturization is close to reaching its potential, photonic devices have un...
Results are presented on the use of InGaAsP photonic crystal nanobeam slot waveguides for refractive...
Photonic crystal nanobeam cavities with high-quality factors are very sensitive to the dielectric pr...
© 2015 Optical Society of America. The miniaturization of optical sensors is essential for the reali...
A biosensor design based on a photonic crystal nanobeam cavity with an optomechanical positive feedb...
Using a micromanipulation technique, a planar photonic crystal nanocavity made from a thin semicondu...
Detection of nanoscale objects is highly desirable in various fields such as early-stage disease dia...
Optomechanical nanocavities allow nanomechanical resonances to be measured optically with high sensi...
Planar photonic crystal nanocavities, made in a thin semiconductor membrane and suspended by breakab...
Photonic crystals have achieved a lot of research significance due to their projected applications. ...
A high-Q slot mode photonic crystal nanobeam cavity based biosensor design with positive optomechani...
Lasers can be used for a multitude of sensing applications. This dissertation discusses two types of...
The growing applications of nanoparticles in energy and healthcare demand new metrology techniques w...
We present the design, fabrication, and photoluminescence experiment of InGaAsP photonic crystal slo...
Photonic crystal nanobeam cavities with high-quality factors are very sensitive to the changes of th...
While electronic device miniaturization is close to reaching its potential, photonic devices have un...
Results are presented on the use of InGaAsP photonic crystal nanobeam slot waveguides for refractive...
Photonic crystal nanobeam cavities with high-quality factors are very sensitive to the dielectric pr...
© 2015 Optical Society of America. The miniaturization of optical sensors is essential for the reali...
A biosensor design based on a photonic crystal nanobeam cavity with an optomechanical positive feedb...
Using a micromanipulation technique, a planar photonic crystal nanocavity made from a thin semicondu...
Detection of nanoscale objects is highly desirable in various fields such as early-stage disease dia...
Optomechanical nanocavities allow nanomechanical resonances to be measured optically with high sensi...
Planar photonic crystal nanocavities, made in a thin semiconductor membrane and suspended by breakab...
Photonic crystals have achieved a lot of research significance due to their projected applications. ...
A high-Q slot mode photonic crystal nanobeam cavity based biosensor design with positive optomechani...
Lasers can be used for a multitude of sensing applications. This dissertation discusses two types of...
The growing applications of nanoparticles in energy and healthcare demand new metrology techniques w...
We present the design, fabrication, and photoluminescence experiment of InGaAsP photonic crystal slo...
Photonic crystal nanobeam cavities with high-quality factors are very sensitive to the changes of th...
While electronic device miniaturization is close to reaching its potential, photonic devices have un...