Domain-wall dynamics in Bose–Einstein condensates with synthetic gauge fields - Nature

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Domain-wall dynamics in Bose–Einstein condensates with synthetic gauge fields - Nature
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Research published in Nature reports the creation of density-dependent gauge fields in a ultracold atomic gas, observing the formation of domain walls that behave as elementary excitations

. The challenge of understanding the complexity of matter–gauge interaction can be aided by quantum simulations, for which ultracold atoms offer a versatile platform via the creation of artificial gauge fields. An important step towards simulating the physics of exotic emergent particles is the synthesis of artificial gauge fields whose state depends dynamically on the presence of matter.

The density-dependent gauge field is created by simultaneous modulations of an optical lattice potential and interatomic interactions, and results in domains of atoms condensed into two different momenta. Modelling the domain walls as elementary excitations, we find that the domain walls respond to synthetic electric field with a charge-to-mass ratio larger than and opposite to that of the bare atoms.

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Nature /  🏆 64. in US

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