Realization of a Townes Soliton in a Two-Component Planar Bose Gas

Most experimental observations of solitons are limited to one-dimensional (1D) situations, where they are naturally stable. For instance, in 1D cold Bose gases, they exist for any attractive interaction strength g and particle number N. By contrast, in two dimensions, solitons appear only for discre...

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Veröffentlicht in:Physical review letters 2021-07, Vol.127 (2), p.023603-023603, Article 023603
Hauptverfasser: Bakkali-Hassani, B., Maury, C., Zou, Y.-Q., Le Cerf, É., Saint-Jalm, R., Castilho, P. C. M., Nascimbene, S., Dalibard, J., Beugnon, J.
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Sprache:eng
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Zusammenfassung:Most experimental observations of solitons are limited to one-dimensional (1D) situations, where they are naturally stable. For instance, in 1D cold Bose gases, they exist for any attractive interaction strength g and particle number N. By contrast, in two dimensions, solitons appear only for discrete values of gN, the so-called Townes soliton being the most celebrated example. Here, we use a two-component Bose gas to prepare deterministically such a soliton: Starting from a uniform bath of atoms in a given internal state, we imprint the soliton wave function using an optical transfer to another state. We explore various interaction strengths, atom numbers, and sizes and confirm the existence of a solitonic behavior for a specific value of gN and arbitrary sizes, a hallmark of scale invariance.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.127.023603