An international team of engineers and physicists have found a way to use quantum light to improve the performance of cutting-edge spectroscopy. Their new technique enables measurements of infrared ...
A research team has successfully developed the technology to fabricate high-sensitive biosensors by simply spraying, like an inkjet printer. The technology enables the fabrication of sensitive and ...
Researchers have developed a label-free and non-invasive Raman spectroscopy approach that can acquire microscopic images of biological samples and identify a wide range of biomolecules with ...
A new technique can control a larger number of microscopic defects in a diamond. These defects can be used as qubits for quantum sensing applications, and being able to control a greater number of ...
Photoacoustic microscopy (PAM) continues to make inroads into biomedical imaging, thanks to its potential for capillary-level or sub-cellular resolution at greater depths than traditional optical ...
Quantitative phase imaging (QPI) applied to holographic microscopy harnesses coherent light interference to record both intensity and phase information, enabling label-free visualisation of ...
Pressure pain sensitivity assessment encompasses a range of methods designed to quantify an individual’s response to mechanical pressure stimuli. The most widely used measure is the pressure pain ...
In quantum sensing, atomic-scale quantum systems are used to measure electromagnetic fields, as well as properties like rotation, acceleration, and distance, far more precisely than classical sensors ...
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