Experimental tests for macroscopic phase coherence in magnetic-quasiparticle condensates of insulating spin systems
arXiv:1107.4335 · doi:10.1088/1742-6596/400/3/032081
Abstract
For most kinds of already known Bose-Einstein condensates experimental evidence for the existence of a macroscopic coherent quantum state has been provided, e.g., from the observation of interference phenomena, the formation vortices, the detection of Josephson effects, or even by the manifestation of superfluid behaviour. However, none of these hallmarks for a true, macroscopic phase-coherent state has ever been reported for any insulating spin system in a solid in which magnetic bosonic quasiparticles are thought to condense close to a quantum critical point. We describe an attempt to detect superfluid behaviour in TlCuCl3, and discuss in more detail a proposal for an experiment in which the a.c. Josephson effect can be probed by using a device composed of two weakly coupled magnetic insulators with different critical fields. We conclude that the detection of the a.c. Josephson effect is feasible for a proper choice of compounds with realistic material parameters.
6 pages, 2 figures
References in corpus (4)
- Bose-Einstein Condensation in Magnetic Insulators
- U(1)-Symmetry breaking and violation of axial symmetry in TlCuCl3 and other insulating spin systems
- Drastic enhancement of magnon thermal conductivity in the Bose-Einstein condensed state of TlCuCl
- High-field instability of field-induced triplon Bose-Einstein condensate