Spontaneous Demagnetization of a Dipolar Spinor Bose Gas in an Ultralow Magnetic Field

Benjamin Pasquiou, É. Maréchal, G. Bismut, P. Pedri, L. Vernac, O. Gorceix, B. Laburthe-Tolra

Physical Review Letters · 2011 · 102 citations · 26 references

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Abstract

We study the spinor properties of S = 3 (52)Cr condensates, in which dipole-dipole interactions allow changes in magnetization. We observe a demagnetization of the Bose-Einstein condensate (BEC) when the magnetic field is quenched below a critical value corresponding to a phase transition between a ferromagnetic and a nonpolarized ground state, which occurs when spin-dependent contact interactions overwhelm the linear Zeeman effect. The critical field is increased when the density is raised by loading the BEC in a deep 2D optical lattice. The magnetization dynamics is set by dipole-dipole interactions.

References

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