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- W2886696522 abstract "Abstract Bose Einstein condensates of spin-1 atoms are known to exist in two different phases, both having spontaneously broken spin-rotation symmetry, a ferromagnetic and a polar condensate. Here we show that in two spatial dimensions it is possible to achieve a quantum phase transition from a polar condensate into a singlet phase symmetric under rotations in spin space. This can be done by using particle density as a tuning parameter. Starting from the polar phase at high density the system can be tuned into a strong-coupling intermediate-density point where the phase transition into a symmetric phase takes place. By further reducing the particle density the symmetric phase can be continuously deformed into a Bose-Einstein condensate of singlet atomic pairs. We calculate the region of the parameter space where such a molecular phase is stable against collapse." @default.
- W2886696522 created "2018-08-22" @default.
- W2886696522 creator A5013436397 @default.
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- W2886696522 date "2018-08-20" @default.
- W2886696522 modified "2023-09-26" @default.
- W2886696522 title "Symmetry-restoring quantum phase transition in a two-dimensional spinor condensate" @default.
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- W2886696522 doi "https://doi.org/10.1038/s41598-018-30876-x" @default.
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