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Oat hull and apple fiber are combined to create Meta Fiber, which offers dietary fiber per serving. This fiber mix with a low allergy potential is made to promote regular bowel movements and healthy intestinal transit time, as well as to help people who have periodic constipation. For people who react badly to psyllium, wheat, corn, or citrus, Meta Fiber is excellent.
Researchers are pursuing alternative cooling techniques in response to the public’s rising awareness of the energy issue and global warming. By dissipating excess heat through the atmospheric long-wave infrared transmission window (8–13 m) to the cold universe, radiative cooling is an environmentally beneficial method.
Radiative cooling can be accomplished using metamaterials with distinctive photonic structures, which have been thoroughly investigated. The creation of meta fibers by incorporating meta-elements at the fabric’s fiber level is anticipated to help individuals manage their body heat through radiative cooling.
The global meta fibers market accounted for $XX Billion in 2021 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2022 to 2030.
By embedding meta surfaces on the fiber ends, meta fibers increase the capabilities of standard optical fibers to enable previously unheard-of nanoscale light manipulations, emerging as a platform for light coupling for both the nanoscience and fiber optics sectors. Due to the lack of standardized interfaces with universal fiber networks, current meta fibers continue to be proof-of-concept experiments that mostly study isolated bare fibers.
The meta fibers with tunable plasmonic resonances are integrated into fiber laser cavities with plug-and-play connections with fiber circuitry and arbitrary meta surface landscapes, producing all-fiber sub-picosecond soliton mode locked lasers at optical wavelengths that show off their unusual polarimetric nonlinear transfer functions and superior saturation absorption.