4 papers
Inspiral tests of general relativity and waveform geometry
Brian C. Seymour, Jacob Golomb, Yanbei Chen
The phase evolution of gravitational waves encodes critical information about the orbital dynamics of binary systems. In this work, we test the robustness of parameterized tests ag…
Dynamics of Relativistic Binaries in Structured and Stochastic Environments: A Lagrange-Fourier-Hansen Framework
Lorenz Zwick, Conor Dyson, Brian C. Seymour +2
We develop a general framework to characterize non-vacuum perturbations to relativistic binaries in the gravitational-wave (GW) driven regime, for use in GW parameter estimation st…
Gravitational-wave signatures of nonviolent nonlocality
Brian C. Seymour, Yanbei Chen
Measurement of gravitational waves can provide precision tests of the nature of black holes and compact objects. In this work, we test Giddings' nonviolent nonlocality proposal, wh…
Prospects for High-Frequency Gravitational-Wave Detection with GEO600
Christopher M. Jungkind, Brian C. Seymour, Andrew Laeuger +1
Current ground-based interferometers are optimized for sensitivity from a few tens of Hz to about 1 kHz. While they are not currently utilized for GW detection, interferometric det…