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Overlap reduction function for pulsar timing arrays in an expanding Universe
by
Zhu, Qing-Hua
in
Astronomy
/ Astrophysics and Cosmology
/ Cosmological constant
/ Cosmology
/ Dark energy
/ Detectors
/ Elementary Particles
/ Gravitational waves
/ Hadrons
/ Heavy Ions
/ Measurement Science and Instrumentation
/ Nuclear Energy
/ Nuclear Physics
/ Phase transitions
/ Physics
/ Physics and Astronomy
/ Pulsars
/ Quantum Field Theories
/ Quantum Field Theory
/ Reduction
/ Regular Article - Theoretical Physics
/ Sensors
/ Spacetime
/ String Theory
/ Universe
2024
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Overlap reduction function for pulsar timing arrays in an expanding Universe
by
Zhu, Qing-Hua
in
Astronomy
/ Astrophysics and Cosmology
/ Cosmological constant
/ Cosmology
/ Dark energy
/ Detectors
/ Elementary Particles
/ Gravitational waves
/ Hadrons
/ Heavy Ions
/ Measurement Science and Instrumentation
/ Nuclear Energy
/ Nuclear Physics
/ Phase transitions
/ Physics
/ Physics and Astronomy
/ Pulsars
/ Quantum Field Theories
/ Quantum Field Theory
/ Reduction
/ Regular Article - Theoretical Physics
/ Sensors
/ Spacetime
/ String Theory
/ Universe
2024
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Overlap reduction function for pulsar timing arrays in an expanding Universe
by
Zhu, Qing-Hua
in
Astronomy
/ Astrophysics and Cosmology
/ Cosmological constant
/ Cosmology
/ Dark energy
/ Detectors
/ Elementary Particles
/ Gravitational waves
/ Hadrons
/ Heavy Ions
/ Measurement Science and Instrumentation
/ Nuclear Energy
/ Nuclear Physics
/ Phase transitions
/ Physics
/ Physics and Astronomy
/ Pulsars
/ Quantum Field Theories
/ Quantum Field Theory
/ Reduction
/ Regular Article - Theoretical Physics
/ Sensors
/ Spacetime
/ String Theory
/ Universe
2024
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Overlap reduction function for pulsar timing arrays in an expanding Universe
Journal Article
Overlap reduction function for pulsar timing arrays in an expanding Universe
2024
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Overview
Since it was confirmed two decades ago that the expansion of the Universe is accelerating, it would be of theoretical interests to figure out what is the influence from cosmological constant on detection of stochastic gravitational wave background. This paper studies the overlap reduction functions in de-Sitter space-time for a pair of one-way tracking gravitational wave detectors. It is shown to be non-trivial in an expanding Universe, because the propagation of light along line of sight also has effect on the response of GW detectors. It is found that the expansion of the Universe can enhance the value of magnitude of the overlap reduction functions, when the detector pairs are close to each other. For nanohertz gravitational waves, this effect can dominate the values of overlap reduction functions when the galactic pulsar pairs are separated by milliarcsecond.
Publisher
Springer Berlin Heidelberg,Springer,Springer Nature B.V,SpringerOpen
Subject
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