At low temperatures, hydrogen atoms move less like particles and more like waves. This characteristic enables quantum ...
STOCKHOLM — John Clarke, Michel H. Devoret and John M. Martinis won the Nobel Prize in Physics on Tuesday for research into quantum mechanical tunneling. Clarke conducted his research at the ...
The 2025 Nobel Prize in Physics has been awarded to John Clarke, Michel H. Devoret, and John M. Martinis “for the discovery of macroscopic quantum tunneling and energy quantization in an electrical ...
John Clarke, Michel H. Devoret, and John M. Martinis have won the 2025 Nobel Prize in Physics for experiments that revealed quantum behavior in electrical circuits, showing that even systems made of ...
Hosted on MSN
Speed test of 'tunneling' electrons challenges alternative interpretation of quantum mechanics
Quantum mechanics describes the unconventional properties of subatomic particles, like their ability to exist in a superposition of multiple states, as popularized by the Schrödinger's cat analogy, ...
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 ...
Ytterbium titanate (Yb 2 Ti 2 O 7 or YbTO) is part of a special class of minerals called pyrochlores. These minerals have a huge range of potential applications, from fuel cells to high-temperature ...
Three scientists shared the Nobel Prize in physics for demonstrating how quantum mechanics work on a new scale, with potential implications for the next generation of quantum technology. The winners ...
Imagine detecting a single trillionth of a gram of a molecule—like an amino acid—using just electricity and a chip smaller than your fingernail. That’s the power of a new quantum-enabled biosensor ...
John Clarke, Michel H. Devoret and John M. Martinis won the Nobel Prize in Physics on Tuesday for research into quantum mechanical tunneling. Clarke conducted his research at the University of ...
MIT scientists uncovered direct evidence of unconventional superconductivity in magic-angle graphene by observing a distinctive V-shaped energy gap. The discovery hints that electron pairing in this ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results