Micro-/Nanofiber Optics: Merging Photonics and Material Science on
Here we review the recent progress in optical MNF sensors regarding their fabrication, waveguide properties, and sensing applications.
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Here we review the recent progress in optical MNF sensors regarding their fabrication, waveguide properties, and sensing applications.
Compared with conventional optical fiber sensors, these novel micro optical fiber sensors fabricated by laser-micromachining have outstanding advantages, such as fast and direct formation,
In this paper, a distributed optical fiber sensor for monitoring micro-surface cracks is presented and demonstrated. In the simulation, by using finite element methods, an assemblage of a three
This review paper presents the foundations of fiber-optic chemical sensing or biosensing, including the sensing mechanisms of various fiber-optic sensors, sensing materials and the novel
In the fabrication process solely chemical wet lab techniques are used, avoiding cost-intensive instrumentation or clean room facilities. The presented method for preparing fiber optic
A new simple fiber-optic evanescent wave sensor was created to accurately monitor the growth and hydrogen production performance of biofilms.
The combination of fiber optics with sensitive nano-films offers great potential for the realization of novel sensing concepts. Miniatured optical fiber sensors with thin films as sensitive
Here, we review the basic principles of microfiber-optic sensors based on a broad range of microstructures, nanostructures, and functional materials. We also introduce the recent progress and
This paper reviews the principle, preparation, and application of fiber-optic microstructured sensing based on abrupt field type.
As a low-dimensional optical fiber with diameter close to or below the wavelength of light, optical micro/nanofiber (MNF) offers a number of favorable
Accurate position, distance and size detection in industrial processes are performed by the high-performance optoCONTROL CLS1000 fiber optic
Recent developments in fiber-optic sensing have involved booming research in the design and manufacturing of novel micro-structured optical fiber
With the continuous improvement of MOFs manufacturing process and the pioneering functional designs, now based on MOFs, high-power fiber lasers , wide-bandwidth polarization
Abstract We are developing fiber-optic based micro-sensors for measurement of dynamically induced micro- to nano-Newton forces. The force-sensing transduction mechanism is
Recently, microfiber-optic sensors with high sensitivity, fast response times, and a compact size have become an area of interest that integrates fiber
Optical fibre micro/nano tips (OFTs), defined here as tapered fibres with a waist diameter ranging from a few microns to tens of nanometres and different tip
Therefore, there is a need for a method to prepare ultrasensitive nanosensors based on AuNPs-coated optical fiber (OF-LSPR sensors) with reproducible composition.
This paper attempts to provide a comprehensive review of all MNF based sensors reported to-date. Sensors are divided according to their
Here, we report an ultra-sensitive multi-functional optical micro/nanofiber embedded with a flexible polydimethylsiloxane (PDMS)
Therefore, there is an urgent requirement to develop an optical sensor that can monitor exhaled CO 2 in real time. Micro/nano fibers can be applied in
Micro- and nano-structured optical fibers enable compact gas sensors with enhanced sensitivity. This paper overviews recent development in all-fiber gas sensors.
During the development of miniature optical sensors, different materials and micro/nanostructures have been reasonably designed and functionalized on the
The development of micro/nanofiber sensors and associated integrated systems is a major project spanning photonics, engineering, and materials science, and has
Micro-/nanofibers (MNFs) are optical fibers with diameters close to or below the wavelength of the guided light. These tiny fibers can offer engineerable waveguiding properties
Distinct advantages of optical microfiber, such as large accessible evanescent fields and convenient configurability, provide attractive benefits for
Fraunhofer IPT develops fiber-optic sensors for challenging measurement tasks such as measuring the smallest of boreholes. Using fiber-integrated beam steering and