Exploring effects of magnetic field on the Hadron Resonance Gas
arXiv:1504.04533 · doi:10.1209/0295-5075/115/62003
Abstract
We present a study of the effects of magnetic fields on fluctuations and correlations in hadron resonance gas model. We find significant changes in the fluctuations of net baryon number, electric charge and strangeness. This is also reflected in various fluctuation ratios along the freezeout curve.
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- Fluctuations and correlations of net baryon number, electric charge and strangeness in a background magnetic field
- Interacting hadron resonance gas model in K-matrix formalism
- Baryon electric charge correlation as a magnetometer of QCD
- Transport coefficients in a finite volume Polyakov--Nambu--Jona-Lasinio model
- Finite size effect of hadronic matter on its transport coefficients
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- Correlations and fluctuations in a magnetized PNJL model with and without inverse magnetic catalysis effect
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- Strangelets formation in high energy heavy-ion collisions
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- Universal descriptions of chemical freeze-out based on pressure and specific heat
- Chemical freeze-out systematics of thermal model analysis using hadron yield ratios