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  2. Bose–Einstein condensate - Wikipedia

    en.wikipedia.org/wiki/BoseEinstein_condensate

    The same team demonstrated in 2017 the first creation of a Bose–Einstein condensate in space [70] and it is also the subject of two upcoming experiments on the International Space Station. [71] [72] Researchers in the new field of atomtronics use the properties of Bose–Einstein condensates in the emerging quantum technology of matter-wave ...

  3. Bose–Einstein statistics - Wikipedia

    en.wikipedia.org/wiki/BoseEinstein_statistics

    Bose and Einstein extended the idea to atoms and this led to the prediction of the existence of phenomena which became known as Bose–Einstein condensate, a dense collection of bosons (which are particles with integer spin, named after Bose), which was demonstrated to exist by experiment in 1995.

  4. Atom laser - Wikipedia

    en.wikipedia.org/wiki/Atom_laser

    There has been some argument that the term "atom laser" is misleading. Indeed, "laser" stands for light amplification by stimulated emission of radiation which is not particularly related to the physical object called an atom laser, and perhaps describes more accurately the Bose–Einstein condensate (BEC). The terminology most widely used in ...

  5. Superfluid vacuum theory - Wikipedia

    en.wikipedia.org/wiki/Superfluid_vacuum_theory

    Superfluid vacuum theory (SVT), sometimes known as the BEC vacuum theory, is an approach in theoretical physics and quantum mechanics where the fundamental physical vacuum (non-removable background) is considered as a superfluid or as a Bose–Einstein condensate (BEC).

  6. Wolfgang Ketterle - Wikipedia

    en.wikipedia.org/wiki/Wolfgang_Ketterle

    In addition to ongoing investigations of Bose–Einstein condensates in ultracold atoms, his more recent achievements have included the creation of a molecular Bose condensate in 2003, [8] as well as a 2005 experiment providing evidence for "high-temperature" superfluidity in a fermionic condensate. [9]

  7. Randall G. Hulet - Wikipedia

    en.wikipedia.org/wiki/Randall_G._Hulet

    He is a pioneer of experiments with ultracold atoms and Bose-Einstein condensates (BEC). [1] He is known for the first realization of a Bose-Einstein condensate in an atomic gas with attractive interaction, where the formation of the BEC competes with the usual condensation due to the attractive interaction.

  8. Bianconi–Barabási model - Wikipedia

    en.wikipedia.org/wiki/Bianconi–Barabási_model

    Bosons, on the other hand, do not obey the exclusion principle, and any number can exist in the same state. As a result, at very low energies (or temperatures), a great majority of the bosons in a Bose gas can be crowded into the lowest energy state, creating a Bose–Einstein condensate. Bose and Einstein have established that the statistical ...

  9. Bose–Einstein correlations - Wikipedia

    en.wikipedia.org/wiki/BoseEinstein_correlations

    Besides these practical applications of Bose–Einstein correlations in interferometry, the quantum statistical approach [10] has led to quite an unexpected heuristic application, related to the principle of identical particles, the fundamental starting point of Bose–Einstein correlations.