Dark matter is an elusive type of matter that does not emit, absorb or reflect light, interacting very weakly with ordinary ...
The Daily Galaxy on MSN
A Japanese team built a sensor so precise, it might have found a way to track dark matter
Dark matter is believed to make up most of the matter in the universe, yet it has never been directly detected. One theory ...
Interesting Engineering on MSN
New quantum sensor technology could 'see' velocity to unmask dark matter
Researchers at the University of Tokyo and Chuo University have proposed a strategy to identify light dark matter using a ...
Quantum sensor technology promises even more precise measurements of physical quantities. A team has now compared the signals of up to 91 quantum sensors with each other and thus successfully ...
In a scientific breakthrough, an international research team from Germany's Forschungszentrum Jülich and Korea's IBS Center for Quantum Nanoscience (QNS) developed a quantum sensor capable of ...
PARIS — The French Navy took delivery of its first serial-produced, quantum-technology sensor this year, a quantum gravimeter used for mapping the seabed, the head of the country’s defense innovation ...
As EV manufacturers aim for cars with longer range, faster charging, and improved safety, the demand for effective EV battery management technology is increasing. The sensors currently used for ...
By inserting tiny imperfections into the stones, scientists open up possibilities in computing, encryption and sensors ...
Polymer thin-film optical cavities boost the magnetic sensing sensitivity of nanodiamond quantum sensors nearly fivefold ...
Quantum computing has been touted as a revolutionary advance that uses our growing scientific understanding of the subatomic world to create a machine with powers far ...
Alfredo has a PhD in Astrophysics and a Master's in Quantum Fields and Fundamental Forces from Imperial College London.View full profile Alfredo has a PhD in Astrophysics and a Master's in Quantum ...
A comparative illustration of the performance between a conventional STM image (left) and an image obtained with the developed quantum sensor (right). When observing atoms with a conventional STM, ...
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