Fiber-coupled vapor cell for a portable Rydberg atom-based radio
This all-dielectric fiber-coupled sensor can be moved from the optics table to locations more suitable for RF (gigahertz to sub-terahertz) E-field measurements and calibrations.
Fiber coupling allows upgrading a CCD or CMOS sensor with an image intensifier to increase its sensitivity or enables ultra-short gating or extends its spectral range into the UV range. The gas sensor design employs a White cell topology to maximize the optica...
This all-dielectric fiber-coupled sensor can be moved from the optics table to locations more suitable for RF (gigahertz to sub-terahertz) E-field measurements and calibrations.
By integrating fiber-coupled digital silicon photomultipliers, we propose a design that enhances light detection, improves energy resolution, and enhance event reconstruction.
In contrast, fiber coupling provides a small sensor head that may be moved with relative independence from the rest of the control instrumentation and thus offers the possibility of application
Fiber optic sensors, coupled with fiber laser technology, are transforming the landscape of sensing and monitoring across diverse sectors. The integration of fiber lasers enhances the performance of these
This work presents the recent development of a fiber-coupled multipass near-infrared (NIR) gas sensor used to monitor water vapor desorption of small material coupons.
We developed an all optic-fiber waveguide-coupled surface plasmon resonance (SPR) sensor using zirconium disulfide (ZrS 2) and poly-dopamine (PDA) as the dielectric layer and
Fiber coupling allows upgrading a CCD or CMOS sensor with an image intensifier to increase its sensitivity or enables ultra-short gating or extends its spectral range into the UV range. Fiber optical
The all-fiber-coupled QEPAS sensor combines the advantages of a sensitive detection based on QEPAS spectroscopy with the flexibility offered by a fiber-coupled systems.
Brief theory of sensing principle, fabrication method, applications, advantages and disadvantages of the different fiber-optic sensors, are addressed. Recent progress in numerous
This article presents a system that exploits multi-core fiber (MCF) coupling to retrieve the position of the received beam and feed it to the pointing, acquisition and tracking (PAT) system,