Add Yahoo as a preferred source to see more of our stories on Google. The members of the BEC team at Columbia, from left to right: associate research scientist Ian Stevenson, doctoral student Niccolò ...
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Atomic spins set quantum fluid in motion: Experimental realization of the Einstein–de Haas effect
The Einstein–de Haas effect, which links the spin of electrons to macroscopic rotation, has now been demonstrated in a quantum fluid by researchers at Science Tokyo. The team observed this effect in a ...
This month marks 25 years since scientists first produced a fifth state of matter, which has extraordinary properties totally unlike solids, liquids, gases and plasmas. The achievement garnered a ...
We are familiar with the four states of matter such as solid, liquid, gas, and plasma, but little did we know that there's a fifth state called Bose-Einstein Condensate or BEC. Recently, a group of ...
Bose–Einstein condensates and ultracold atoms continue to offer profound insights into quantum many‐body systems and emergent macroscopic quantum phenomena. These systems, achieved by cooling dilute ...
(Nanowerk News) There’s a hot new BEC in town that has nothing to do with bacon, egg, and cheese. You won’t find it at your local bodega, but in the coldest place in New York: the lab of Columbia ...
Recent theoretical developments have fostered a convergence between gravitational physics and condensed matter through the investigation of black holes as self-sustained Bose–Einstein condensates.
Fig. Typical setup for laser cooling and trapping of polar molecules. (a) The population distribution of rotational states in buffer gas cell . (b) Upper panel: Comparison of molecule numbers with and ...
In a Columbia University laboratory in New York, physicist Sebastian Will and his team have reached one of ultracold physics’ long-running goals: turning molecules into a Bose-Einstein condensate.
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