Neutron star crustal plate tectonics. I. Magnetic dipole evolution in millisecond pulsars and low-mass X-ray binaries
Description
Crust lattices in spinning-up or spinning-down neutron stars have growing shear stresses caused by neutron superfluid vortex lines pinned to lattice nuclei. For the most rapidly spinning stars, this stress will break and move the crust before vortex unpinning occurs. In spinning-down neutron stars, crustal plates will move an equatorial subduction zone in which the plates are forced into the stellar core below the crust. The opposite plate motion occurs in spinning-up stars. Magnetic fields which pass through the crust or have sources in it move with the crust. Spun-up neutron stars in accreting low-mass X-ray binaries LMXBs should then have almost axially symmetric magnetic fields. Spun-down ones with very weak magnetic fields should have external magnetic fields which enter and leave the neutron star surface only near its equator. The lowest field millisecond radiopulsars seem to be orthogonal rotators implying that they have not previously been spun-up in LMXBs but are neutron stars initially formed with periods near 0.001 s that subsequently spin down to their present periods. Accretion-induced white dwarf collapse is then the most plausible genesis for them. 29 refs
Additional details
Publishing Information
- Journal Title
- Astrophysical Journal
- Journal Volume
- 366
- Series
- Astrophys. J.
- Journal Page Range
- 261-269
- ISSN
- 0004-637X
- CODEN
- ASJOA
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 22040272
- Subject category
- S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
- Descriptors DEI
- BINARY STARS; COSMIC RADIO SOURCES; COSMIC X-RAY SOURCES; MAGNETIC DIPOLES; MAGNETIC FIELDS; MORPHOLOGICAL CHANGES; NEUTRON STARS; PULSARS; ROTATION; STAR ACCRETION; STAR EVOLUTION; WHITE DWARF STARS
- Descriptors DEC
- COSMIC RAY SOURCES; DIPOLES; DWARF STARS; MULTIPOLES; STARS