Dark matter capture heats Planet 9 to ~200 K for certain interaction strengths, providing an infrared observational signature.
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Strong magnetic fields in compact stars induce Landau quantization and magnetic-moment couplings that change the equation of state and allow additional degrees of freedom such as hyperons, Delta resonances, and quark matter.
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Dark matter heating of Planet 9, and its observational implications
Dark matter capture heats Planet 9 to ~200 K for certain interaction strengths, providing an infrared observational signature.
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Dense Matter and Compact Stars in Strong Magnetic Fields
Strong magnetic fields in compact stars induce Landau quantization and magnetic-moment couplings that change the equation of state and allow additional degrees of freedom such as hyperons, Delta resonances, and quark matter.