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Stars as laboratories for fundamental physics: the astrophysics of neutrinos, axions, and other weakly interacting particles
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1996
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Laboratory AstrophysicsNeutrino PropertyPhotometryExperimental Nuclear PhysicsEngineeringPhysicsNatural SciencesNuclear TheoryNeutrino PhysicNeutrino AstronomyPlasma PhysicsTheoretical PhysicsFundamental PhysicsDimensions AppSupernova Neutrinos 12Bottom Line AppNuclear Astrophysics
Preface Acknowledgments 1: The Energy-Loss Argument 2: Anomalous Stellar Energy Losses Bounded by Observations 3: Particles Interacting with Electrons and Baryons 4: Processes in a Nuclear Medium 5: Two-Photon Coupling of Low-Mass Bosons 6: Particle Dispersion and Decays in Media 7: Nonstandard Neutrinos 8: Neutrino Oscillations 9: Oscillations of Trapped Neutrinos 10: Solar Neutrinos 11: Supernova Neutrinos 12: Radiative Particle Decays from Distant Sources 13: What Have We Learned from SN 1987A? 14: Axions 15: Miscellaneous Exotica 16: Neutrinos: The Bottom Line App. A. Units and Dimensions App. B. Neutrino Coupling Constants App. C. Numerical Neutrino Energy-Loss Rates App. D. Characteristics of Stellar Plasmas References Acronyms Symbols Subject Index