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Simulation of quantum field theory and gravity in superfluid3He

 

作者: G. E. Volovik,  

 

期刊: Low Temperature Physics  (AIP Available online 1998)
卷期: Volume 24, issue 2  

页码: 127-129

 

ISSN:1063-777X

 

年代: 1998

 

DOI:10.1063/1.593556

 

出版商: AIP

 

数据来源: AIP

 

摘要:

Superfluid phases of3Heare quantum liquids with the interacting fermionic and bosonic fields. In many respects they can simulate the interacting quantum fields in the physical vacuum. One can observe analogs of such phenomena as axial anomaly, vacuum polarization, zero-charge effect, fermionic charge of the vacuum, baryogenesis, ergoregion, vacuum instability, etc. We discuss some topics using as an example several linear defects in3He-A:(1) disgyration, which simulates the extremely massive cosmic string, (2) singular vortex, which is analogous to the spinning cosmic string, and (3) continuous vortex, whose motion causes the «momentogenesis» which is the analog of baryogenesis in early Universe. The production of the fermionic momentum by the vortex motion (the counterpart of the electroweak baryogenesis) has been recently measured in Manchester experiments on rotating superfluid3He-Aand3He-B.To simulate the other phenomena, one needs a rather low temperature and high homogeneity, which probably can be attained under microgravity conditions. ©1998 American Institute of Physics.

 

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