We present a compact and versatile experimental system for producing Bose-Bose superfluid mixtures composed of sodium and potassium atoms. The compact design combines the necessary ultra-high vacuum enviroment for ultracold atom experiments with efficient atomic fluxes by using two-dimensional magneto-optical traps as independent source of atoms. We demonstrate the performance of this new machine by producing a Bose-Einstein condensate of Na-23 with similar to 1 x 10(6) atoms. The tunability of Na-K bosonic mixtures is particularly interesting for studies regarding the nucleation of vortices and quantum turbulence. In this direction, the large optical access of the science chamber along the vertical direction provides the conditions to implement high resolution optical setups for imaging and rotating the condensate with a stirring beam. We show the nucleation of a vortex lattice with up to 14 vortices in the Na-23 BEC, attesting the efficiency of the experimental apparatus in studying the dynamics of vortices.

A compact experimental machine for studying tunable Bose-Bose superfluid mixtures

Roati G;
2019

Abstract

We present a compact and versatile experimental system for producing Bose-Bose superfluid mixtures composed of sodium and potassium atoms. The compact design combines the necessary ultra-high vacuum enviroment for ultracold atom experiments with efficient atomic fluxes by using two-dimensional magneto-optical traps as independent source of atoms. We demonstrate the performance of this new machine by producing a Bose-Einstein condensate of Na-23 with similar to 1 x 10(6) atoms. The tunability of Na-K bosonic mixtures is particularly interesting for studies regarding the nucleation of vortices and quantum turbulence. In this direction, the large optical access of the science chamber along the vertical direction provides the conditions to implement high resolution optical setups for imaging and rotating the condensate with a stirring beam. We show the nucleation of a vortex lattice with up to 14 vortices in the Na-23 BEC, attesting the efficiency of the experimental apparatus in studying the dynamics of vortices.
2019
Istituto Nazionale di Ottica - INO
Inglese
16
3
035501
035501
11
http://www.scopus.com/inward/record.url?eid=2-s2.0-85064940990&partnerID=q2rCbXpz
Sì, ma tipo non specificato
Bose-Einstein condensate
Boson-Boson mixture
superfluid mixture
vortices
vortex lattice
stirring
The authors thank RF Shiozaki for developing the experimental control program and V Monteiro and DV Magalhaes for providing experimental support. This work was supported by the financial agencies CNPQ, CAPES and by the Sao Paulo Research Foundation (FAPESP) with the grants #2014/14198-0 and #2013/07276-1 (CEPOF-CEPID Program).
7
info:eu-repo/semantics/article
262
Castilho, P C M; Pedrozopenafiel, E; Gutierrez, E M; Mazo, P L; Roati, G; Farias, K M; Bagnato, V S
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/375394
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