Examples of 'bose-einstein' in a sentence
Meaning of "bose-einstein"
Bose-Einstein (noun): A type of statistical mechanics that describes the behaviors and properties of a certain group of particles known as bosons
How to use "bose-einstein" in a sentence
Basic
Advanced
bose-einstein
The Bose-Einstein condensate is first created.
This state is called a Bose-Einstein condensate.
Are Bose-Einstein condensates a new state of matter.
Successive occurrence of Bose-Einstein condensation in rubidium.
The Bose-Einstein condensation is something else.
The difference of the Bose-Einstein distributions.
Bose-einstein condensate the fifth state of matter.
This condensate is known as a Bose-Einstein condensate.
Realization of Bose-Einstein condensates in lower dimensions.
Quantum condensation of bosonic fluids Bose-Einstein condensation.
Condensate Bose-Einstein first made in space.
Spontaneous vortices in the formation of Bose-Einstein condensates.
Establishing a Bose-Einstein bridge requires the energy.
These statistical properties are described as Bose-Einstein statistics.
Just to establish a Bose-Einstein bridge requires the energy.
See also
Creation and dynamics of topological structures in Bose-Einstein condensates.
For a study of Bose-Einstein condensation.
Fermionic condensates are attained at temperatures lower than Bose-Einstein condensates.
This Bose-Einstein condensate is very difficult to imagine or to visualize.
This phenomenon is related to Bose-Einstein condensation.
Nor are Bose-Einstein condensates necessarily the next transistors.
Its properties are examined in Bose-Einstein quantum statistics.
Crossover from Bose-Einstein condensation to lasing in plasmonic nanoparticle lattices.
He later did some work with Bose-Einstein condensates.
A Bose-Einstein condensate has finally been produced after a nearly 4 s evaporation process.
Properties of the Bose-Einstein condensate.
A Bose-Einstein condensate has been produced in space for the first time.
The theory becomes known as Bose-Einstein statistics.
Normally, a Bose-Einstein condensate is a mixture of a quantum gas and a normal gas.
These types of clouds are known as Bose-Einstein condensates.
The Bose-Einstein distribution which describes bosons leads to Bose-Einstein condensation.
These cloud of atoms is called Bose-Einstein condensates.
In Bose-Einstein statistics, any number of identical bosons can be in the same state.
This is what we today call a Bose-Einstein condensate.
Typically, the Bose-Einstein condensate is only able to be formed at extremely low temperatures.
He later did some work with Bose-Einstein condensate.
Superfluid Bose-Einstein condensates follow the rules of quantum physics instead of classical physics.
It has contributed recent breakthrough in Bose-Einstein condensation.
Researchers obtain Bose-Einstein condensate with nickel chloride.
They interpreted this effect as due to Bose-Einstein statistics.
Scientists later realized that Bose-Einstein condensation and superfluidity are intimately related.
This state has since been interpreted to be a Bose-Einstein condensate.
A remarkable property of Bose-Einstein condensates is that they are superfluid.
This simple model treats superconductivity as a charged Bose-Einstein condensate.
Bosons are characterized by Bose-Einstein statistics and all have integer spins.
Such bubbles could serve as a source of positronium Bose-Einstein condensates.
As expected, the coherence of the Bose-Einstein condensates did not produce a particular correlation.
More places to a millionth of a degree, the temperature of a Bose-Einstein condensate.
Stable quantised vortices demonstrate that Bose-Einstein condensates are actually frictionless superfluids.
First my work has been to build a new experience to produce Bose-Einstein condensates.