Giant Primeval Magnetic Dipoles
arXiv:1703.00394 · doi:10.3847/1538-4357/aa7684
Abstract
Macroscopic magnetic dipoles are considered as cosmic dark matter. Permanent magnetism in relativistic field structures can involve some form of superconductivity, one example being current-carrying string loops (`springs') with vanishing net tension. We derive the cross section for free classical dipoles to collide, finding it depends weakly on orientation when mutual precession is rapid. The collision rate of `spring' loops with tension in galactic halos approaches the measured rate of fast radio bursts (FRBs) if the loops comprise most of the dark matter. A large superconducting dipole (LSD) with mass g and size mm will form a km magnetosphere moving through interstellar plasma. Although hydromagnetic drag is generally weak, it is strong enough to capture some LSDs into long-lived rings orbiting supermassive black holes (SMBHs) that form by the direct collapse of massive gas clouds. Repeated collisions near young SMBHs could dominate the global collision rate, thereby broadening the dipole mass spectrum. Colliding LSDs produce tiny, hot electromagnetic explosions. The accompanying paper shows that these explosions couple effectively to propagating low-frequency electromagnetic modes, with output peaking at 0.01-1 THz. We describe several constraints on, and predictions of, LSDs as cosmic dark matter. The shock formed by an infalling LSD triggers self-sustained thermonuclear burning in a C/O (ONeMg) white dwarf (WD) of mass (). The spark is generally located well off the center of the WD. The rate of LSD-induced explosions matches the observed rate of Type Ia supernovae.
23 pages, 19 figures, Astrophysical Journal in press
References in corpus (45)
- Planck 2015 results. XIII. Cosmological parameters
- A bright millisecond radio burst of extragalactic origin
- The M-sigma and M-L Relations in Galactic Bulges and Determinations of their Intrinsic Scatter
- The mass distribution and gravitational potential of the Milky Way
- A Population of Fast Radio Bursts at Cosmological Distances
- Halos and galaxies in the standard cosmological model: results from the Bolshoi simulation
- A Repeating Fast Radio Burst
- Formation of Supermassive Black Holes by Direct Collapse in Pregalactic Halos
- The direct localization of a fast radio burst and its host
- Nonthermal Electrons in Radiatively Inefficient Accretion Flow Models of Sagittarius A*
- The Host Galaxy and Redshift of the Repeating Fast Radio Burst FRB 121102
- Cuspy No More: How Outflows Affect the Central Dark Matter and Baryon Distribution in Lambda CDM Galaxies
- Halo concentrations in the standard LCDM cosmology
- European Pulsar Timing Array Limits On An Isotropic Stochastic Gravitational-Wave Background
- The Repeating Fast Radio Burst FRB 121102 as Seen on Milliarcsecond Angular Scales
- Detonations in Sub-Chandrasekhar Mass C+O White Dwarfs
- Revised Rates of Stellar Disruption in Galactic Nuclei
- Planck 2013 results. XXV. Searches for cosmic strings and other topological defects
- The NANOGrav Nine-year Data Set: Limits on the Isotropic Stochastic Gravitational Wave Background
- The repeating Fast Radio Burst FRB 121102: Multi-wavelength observations and additional bursts
- Type-Ia supernova rates and the progenitor problem, a review
- Super and massive AGB stars - IV. Final fates - Initial to final mass relation
- Dark Matter Triggers of Supernovae
- Numerical Simulation of Hot Accretion Flows (I): A Large Radial Dynamical Range and the Density Profile of Accretion Flow
- The magnetic field and turbulence of the cosmic web measured using a brilliant fast radio burst
- The Field White Dwarf Mass Distribution
- Physical Constraints On Fast Radio Burst
- Constraints on primordial black holes as dark matter candidates from star formation
- Supermassive Black Hole Formation at High Redshifts via Direct Collapse: Physical Processes in the Early Stage
- Cosmic Sparks from Superconducting Strings
- New CMB constraints for Abelian Higgs cosmic strings
- On Carbon Burning in Super Asymptotic Giant Branch Stars
- Implications of fast radio bursts for superconducting cosmic strings
- Not that long time ago in the nearest galaxy: 3D slice of molecular gas revealed by a 110 years old flare of Sgr A*
- Adiabatic contraction revisited: implications for primordial black holes
- The cold dark matter content of Galactic dwarf spheroidals: no cores, no failures, no problem
- Dark matter annihilation radiation in hydrodynamic simulations of Milky Way haloes
- The mass function of hydrogen-rich white dwarfs: robust observational evidence for a distinctive high-mass excess near 1Msun
- The mass function of nearby black hole candidates
- Are FRB Wandering Narrow Beams?
- CMB power spectrum of Nambu-Goto cosmic strings
- Radioactively-Powered Rising Lightcurves of Type Ia Supernovae
- Local Ignition in Carbon/Oxygen White Dwarfs -- I: One-zone Ignition and Spherical Shock Ignition of Detonations
- A Search for Highly Dispersed Fast Radio Bursts in Three Parkes Multibeam Surveys
- The frozen (inactive) disk in Sgr A: freezing the accretion of the hot gas too?
Cited by in corpus (11)
- Fast Radio Bursts
- Fast Radio Bursts: An Extragalactic Enigma
- A Living Theory Catalogue for Fast Radio Bursts
- The Physics of Fast Radio Bursts
- A concordance picture of FRB 121102 as a flaring magnetar embedded in a magnetized ion-electron wind nebula
- Conversion Measure of Faraday Rotation-Conversion with application to Fast Radio Bursts
- A Data-Driven Technique Using Millisecond Transients to Measure the Milky Way Halo
- Fast radio bursts: do repeaters and non-repeaters originate in statistically similar ensembles
- Tiny Electromagnetic Explosions
- Mass distribution of magnetized quark-nugget dark matter and comparison with observations
- Fast Radio Bursts from the Decay of Cosmic String Cusps