Tiny magnetic "flowers" engineered by physicist Anna Palau are redefining how we manipulate magnetic fields. These ...
A flower-shaped structure only a few micrometers in size made of a nickel-iron alloy can concentrate and locally enhance ...
4 天
AZoSensors on MSNTiny Flower-Shaped Structures Amplify Magnetic Fields for Advanced SensingTiny flower-shaped magnetic structures boost local magnetic fields, enhancing sensor performance and enabling new ...
Scientists in Spain have created tiny flower-shaped structures that can boost magnetic fields in a very small area. These ...
A flower-shaped structure only a few micrometres in size made of a nickel-iron alloy can concentrate and locally enhance magnetic fields. The size of the effect can be controlled by varying the ...
1 天
Interesting Engineering on MSN‘Microflower’ structure amplifies magnetic fields 5x, can boost devices’ efficiencyScientists have developed a tiny flower-shaped structure that’s made of a nickel-iron alloy to concentrate and locally ...
German scientists have developed an ultra-thin, energy-efficient electronic skin that can detect and track magnetic fields, ...
4 天
AZoSensors on MSNNew Sensor Geometry Boosts Hall-Effect Performance with MEMS-CMOS IntegrationInnovative inverted pyramid Hall-effect sensors offer improved accuracy and reduced crosstalk, paving the way for ...
4 天
IEEE Spectrum on MSNQuantum Sensor Hits Nanosecond ResolutionResearchers have now unlocked the secret to doing so with a tabletop quantum sensor that can capture magnetic fields with ...
They also enable higher magnetic fields for experimental studies, potentially improving the performance of small magnetic sensors and multifunctional magnetic components. This summary was ...
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