Pion Condensation by Rotation in a Magnetic field
arXiv:1711.08354 · doi:10.1103/PhysRevLett.120.032001
Abstract
We show that the combined effects of a rotation plus a magnetic field can cause charged pion condensation. We suggest that this phenomenon may yield to observable effects in current heavy ion collisions at collider energies, where large magnetism and rotations are expected in off-central collisions.
5 pages, 2 figures. arXiv admin note: text overlap with arXiv:1710.02895
References in corpus (5)
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- String breaking and running coupling of in a rotating media from holography
- Chiral symmetry breaking in accelerating and rotating frames
- Magnetic field effects in peripheral heavy-ion collisions around 1 GeV/nucleon
- Chiral phase transition and spin alignment of vector mesons with chiral imbalance in a rotating QCD medium
- Magnetic field in nuclear collisions at ultra high energies
- Generation of a scalar vortex in a rotational frame
- Examination of the possibility of condensation and magnetization in freely interpenetrating nuclei
- Perturbation theory of rotating scalar fields and vacuum insensitivity to rotation
- Absence of charged pion condensation in a magnetic field with parallel rotation
- The Static Heavy Quark-Antiquark Potential within String Theory in Arbitrary Stationary Backgrounds
- Vorticity-induced effects from Wess-Zumino-Witten terms