Unusual condensates in quark and atomic systems
arXiv:hep-ph/0510302 · doi:10.1080/01422410500424519
Abstract
In these lectures we discuss condensates which are formed in quark matter when it is squeezed and in a gas of fermionic atoms when it is cooled. The behavior of these two seemingly very different systems reveals striking similarities. In particular, in both systems the Bose-Einstein condensate to Bardeen--Cooper-Schrieffer (BEC-BCS) crossover takes place.
Lectures delivered at 8th Moscow school of Physics (33rd ITEP Winter School of Physics)
References in corpus (5)
- Observation of Bose-Einstein Condensation of Molecules
- BCS-BEC Crossover: From High Temperature Superconductors to Ultracold Superfluids
- Achieving a BCS transition in an atomic Fermi gas
- Klein-Gordon Equation for Quark Pairs in Color Superconductor
- Cold quantum gases: coherent quantum phenomena from Bose-Einstein condensation to BCS pairing of fermions
Cited by in corpus (5)
- Electrical Conductivity of Dense Quark Matter with Fluctuations and Magnetic Field Included
- Fermi-to-Bose crossover in a trapped quasi-2D gas of fermionic atoms
- Fluctuation sound absorption in quark matter
- Pre-critical soft photons emission from quark matter
- Sound Attenuation in Quark Matter Due to Pairing Fluctuations