Observable Gravitational Wave Strain at Second Order
arXiv:2512.15704 · doi:10.1103/pwbs-xwrh
Abstract
There is currently no rigorous definition of gravitational wave strain at second order in cosmological perturbation theory. The usual association of gravitational waves with transverse and traceless fluctuations of the metric on spatial hypersurfaces becomes ambiguous at second order, as it inherently depends on the spacetime slicing. While this poses no practical issues in linearized gravity, it presents a fundamental problem for secondary gravitational waves, especially notorious for gravitational waves induced by primordial fluctuations. We compute, for the first time, the observable gravitational wave strain at second order, as measured by geodesic observers that emit and receive electromagnetic signals, thereby settling the debate on gauge ambiguities. Working in a gauge invariant fashion, we find that the measured gravitational wave strain coincides with the transverse-traceless components in the Newton gauge.
10 pages, 1 fig.; Published Version
References in corpus (67)
- Observation of Gravitational Waves from a Binary Black Hole Merger
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- Search for an isotropic gravitational-wave background with the Parkes Pulsar Timing Array
- Searching for the nano-Hertz stochastic gravitational wave background with the Chinese Pulsar Timing Array Data Release I
- The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals
- Cosmological Backgrounds of Gravitational Waves
- Gravitational Wave Spectrum Induced by Primordial Scalar Perturbations
- The cosmological gravitational wave background from primordial density perturbations
- Cosmological perturbations
- Detection methods for stochastic gravitational-wave backgrounds: a unified treatment
- What galaxy surveys really measure
- Gravitational Waves Induced by non-Gaussian Scalar Perturbations
- Gravitational wave background as a probe of the primordial black hole abundance
- The NANOGrav 15-year Data Set: Observations and Timing of 68 Millisecond Pulsars
- Cosmological Backgrounds of Gravitational Waves and eLISA/NGO: Phase Transitions, Cosmic Strings and Other Sources
- The second data release from the European Pulsar Timing Array I. The dataset and timing analysis
- CMB polarization from secondary vector and tensor modes
- The gravitational-wave memory effect
- The Parkes Pulsar Timing Array Third Data Release
- Universal infrared scaling of gravitational wave background spectra
- Pulsar Timing Array Constraints on Primordial Black Holes with NANOGrav 11-Year Data Set
- The gravitational-wave background null hypothesis: Characterizing noise in millisecond pulsar arrival times with the Parkes Pulsar Timing Array
- Inflation and Primordial Black Holes
- Induced gravitational waves as a probe of thermal history of the universe
- Light-cone averaging in cosmology: formalism and applications
- Enhancement of Gravitational Waves Induced by Scalar Perturbations due to a Sudden Transition from an Early Matter Era to the Radiation Era
- Gravitational waves from an early matter era
- Gravitational Waves Induced by Scalar Perturbations during a Gradual Transition from an Early Matter Era to the Radiation Era
- Gauge Independence of Induced Gravitational Waves
- Scalar Induced Gravitational Waves in Different Gauges
- Gravitational wave constraints on the primordial black hole dominated early universe
- Cosmic Rulers
- Probing the equation of state of the early Universe with pulsar timing arrays
- Gauge dependence of gravitational waves generated from scalar perturbations
- The second-order luminosity-redshift relation in a generic inhomogeneous cosmology
- Approximate gauge independence of the induced gravitational wave spectrum
- On the gauge dependence of gravitational waves generated at second order from scalar perturbations
- Search for scalar induced gravitational waves in the International Pulsar Timing Array Data Release 2 and NANOgrav 12.5 years datasets
- Observed galaxy number counts on the lightcone up to second order: II. Derivation
- Conformal Fermi Coordinates
- Hamiltonian approach to 2nd order gauge invariant cosmological perturbations
- Taiji Data Challenge for Exploring Gravitational Wave Universe
- Large-Scale Structure Observables in General Relativity
- The luminosity distance-redshift relation up to second order in the Poisson gauge with anisotropic stress
- Curbing PBHs with PTAs
- Induced Gravitational Wave interpretation of PTA data: a complete study for general equation of state
- A search for cosmogenic neutrinos with the ARIANNA test bed using 4.5 years of data
- Gravitational waves induced by scalar-tensor mixing
- Answers to frequently asked questions about the pulsar timing array Hellings and Downs curve
- Second order Boltzmann equation : gauge dependence and gauge invariance
- Structure formation beyond shell-crossing: nonperturbative expansions and late-time attractors
- Gravitational waves from primordial scalar and tensor perturbations
- Vector and Tensor Contributions to the Luminosity Distance
- Gauge-Transformation Properties of Cosmological Observables and its Application to the Light-Cone Average
- Cosmic Clocks
- Galaxy clusters and a possible variation of the fine structure constant
- On the energy of gravitational waves
- Second-order gauge-invariant formalism for the cosmological observables: Complete verification of their gauge-invariance
- Geodesic "curve"-of-sight formulae for the cosmic microwave background: a unified treatment of redshift, time delay, and lensing
- Primordial Gravitational Waves Assisted by Cosmological Scalar Perturbations
- Gauge-Invariant Tensor Perturbations Induced from Baryon-CDM Relative Velocity and the B-mode Polarization of the CMB
- Galaxy number counts at second order: an independent approach
- Fundamental Physics and Cosmology with TianQin
- Scalar-Induced Gravitational Waves in a CDM Cosmology
- Gravitational wave memory and its effects on particles and fields
- On the Gauge Invariance of Secondary Gravitational Waves
- A Light-Cone Approach to Higher-Order Cosmological Observables