Optical Fibre Micro/Nano Tips as Fluorescence-Based
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
Optical fiber tapers with micro/nano-thickness waists considerably increase light-matter interactions in or near their waists. Here, we propose and demonstrate a novel tapering method of fabricat.
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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
The Optoelectronics Research Centre at the University of Southampton is a research-intensive school with a reputation in photonics and optoelectronics.
Research and development in photonic micro/nano structures functioned as sensors and devices have experienced significant growth in recent years, fueled by their broad applications in the fields of
Following this, we systematically review various micro/nanostructures fabricated by laser techniques, such as laser ablation, laser-induced periodic surface structures (LIPSS), and two
Here, we provide a solution to a fiber-optic based microscale force sensor with high repeatability and low fabrication time by rapid prototyping using a two-photon polymerization tool.
On the one hand, the sensing and optical properties of micro/-nano-fiber devices can be optimized by introducing different micro/nano-structures through micro-/nano-processing technology (femtosecond
Highlights • Fabrication of fiber optic plasmonic sensor using ONLY chemical methods. • Sensors utilize extraordinary transmission of light for signal transduction. •
This paper reviews the principle, preparation, and application of fiber-optic microstructured sensing based on abrupt field type.
The application of fs laser increases the flexibility of the sensing structure and improves the key performance indicators of optical fiber sensors. With its excellent performance, the research
In this paper, a two-photon polymerization technique was employed to fabricate a microscopic F-P framework and a peripheral fence on the tip of a single-mode fiber.
This paper describes the design and fabrication of fiber-optic nanoprobes developed for optical detection in single living cells. It is critical to fabricate probes with well-controlled nanoapertures for optimized
Here, we develop a plasmonic nanohole-patterned multimode optical fiber probe by self-assembly nanosphere lithography technique with low fabrication cost and high yields.
This work introduces an in-situ nano-displacement measurement system via a multimode fiber probe with superoscillatory speckles and deep learning.
In recent years, flexible pressure sensors have garnered significant attention. However, the development of large-area, low-cost, and easily
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,
Abstract. In this research, we proposed fabrication process of optical fiber sensors using femtosecond laser and their applications. A beam of femtosecond laser was focused by an objective
We are developing fiber-optic based micro-sensors for measurement of dynamically induced micro- to nano-Newton forces. The force-sensing transduction mechanism is based on a
High-temperature performance of fiber sensors was tested at 1000 °C, which showed a temperature fluctuation of ±5.5 °C over 5 days. The low
BMF empowers engineers and manufacturers with complete design freedom at the microscale — delivering resolutions down to 2µm and tolerances of ±10µm across medical, optical, electronics,
Abstract and Figures Abstract This paper describes the design and fabrication of fiber-optic nanoprobes developed for optical detection in single