Self-Trapping of Magnon Bose-Einstein Condensates in the Ground State and on Excited Levels: From Harmonic to Box Confinement
Abstract
Long-lived coherent spin precession of He3-B at low temperatures around 0.2Tc is a manifestation of Bose-Einstein condensation of spin-wave excitations or magnons in a magnetic trap which is formed by the order-parameter texture and can be manipulated experimentally. When the number of magnons increases, the orbital texture reorients under the influence of the spin-orbit interaction and the profile of the trap gradually changes from harmonic to a square well, with walls almost impenetrable to magnons. This is the first experimental example of Bose condensation in a box. By selective rf pumping the trap can be populated with a ground-state condensate or one at any of the excited energy levels. In the latter case the ground state is simultaneously populated by relaxation from the exited level, forming a system of two coexisting condensates.
- Publication:
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Physical Review Letters
- Pub Date:
- April 2012
- DOI:
- Bibcode:
- 2012PhRvL.108n5303A
- Keywords:
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- 67.30.er;
- 03.70.+k;
- 05.30.Rt;
- 11.10.Lm;
- Magnetic properties NMR;
- Theory of quantized fields;
- Nonlinear or nonlocal theories and models