KnowraPulsar timingLinked fromLinked fromThe 19 pages that link to Pulsar timing, each with the reason it gives.All 19Broader topic 2Related 16Compared with 1Neutron starRelated: Stable pulse patterns let astronomers test gravity and detect subtle orbital effects.PulsarRelated: Precise pulse-arrival measurements reveal spin changes and effects from orbiting companions.Radio interferometryRelated: Interferometric positions help determine pulsar distances and motions used in timing studies.Binary pulsarRelated: Timing variations reveal the binary orbit and changes in pulse arrival caused by gravity.Jocelyn Bell BurnellRelated: The first pulsar's exceptionally regular timing distinguished it from ordinary interference.Neutron-star equation of stateRelated: Timing can establish high neutron-star masses, ruling out equations of state that are too soft.Dispersion measureRelated: Tracking dispersion-measure changes prevents interstellar delays from masquerading as pulsar timing variations.Millisecond pulsarRelated: Stable millisecond-pulsar signals reveal tiny changes in motion, orbit, and propagation.International Celestial Reference SystemRelated: Pulsar positions and timing analyses can be expressed consistently in the ICRS.Pulsar planetRelated: Orbital motion makes a pulsar’s pulses arrive slightly earlier or later in a repeating pattern.Crab PulsarRelated: Timing the Crab Pulsar tracks its spin changes and abrupt glitches.Antony HewishRelated: Regular pulsar signals became precision tools after the discovery Hewish helped make.Tests of general relativityRelated: Timing binary pulsars exposes relativistic orbital effects over long periods.Joseph Hooton Taylor Jr.Related: Precise timing exposed the binary’s changing orbit despite its great distance.PSR B1937+21Related: Its exceptionally stable pulses make small changes in its spin measurable.Russell Alan HulseRelated: Precise pulse timings let Hulse and Taylor determine the binary orbit.
KnowraPulsar timingLinked fromLinked fromThe 19 pages that link to Pulsar timing, each with the reason it gives.All 19Broader topic 2Related 16Compared with 1Neutron starRelated: Stable pulse patterns let astronomers test gravity and detect subtle orbital effects.PulsarRelated: Precise pulse-arrival measurements reveal spin changes and effects from orbiting companions.Radio interferometryRelated: Interferometric positions help determine pulsar distances and motions used in timing studies.Binary pulsarRelated: Timing variations reveal the binary orbit and changes in pulse arrival caused by gravity.Jocelyn Bell BurnellRelated: The first pulsar's exceptionally regular timing distinguished it from ordinary interference.Neutron-star equation of stateRelated: Timing can establish high neutron-star masses, ruling out equations of state that are too soft.Dispersion measureRelated: Tracking dispersion-measure changes prevents interstellar delays from masquerading as pulsar timing variations.Millisecond pulsarRelated: Stable millisecond-pulsar signals reveal tiny changes in motion, orbit, and propagation.International Celestial Reference SystemRelated: Pulsar positions and timing analyses can be expressed consistently in the ICRS.Pulsar planetRelated: Orbital motion makes a pulsar’s pulses arrive slightly earlier or later in a repeating pattern.Crab PulsarRelated: Timing the Crab Pulsar tracks its spin changes and abrupt glitches.Antony HewishRelated: Regular pulsar signals became precision tools after the discovery Hewish helped make.Tests of general relativityRelated: Timing binary pulsars exposes relativistic orbital effects over long periods.Joseph Hooton Taylor Jr.Related: Precise timing exposed the binary’s changing orbit despite its great distance.PSR B1937+21Related: Its exceptionally stable pulses make small changes in its spin measurable.Russell Alan HulseRelated: Precise pulse timings let Hulse and Taylor determine the binary orbit.