Fourier Domain
arXiv:2209.07954 · doi:10.1007/978-981-16-4544-0_137-1
Abstract
The changes in brightness of an astronomical source as a function of time are key probes into that source's physics. Periodic and quasi-periodic signals are indicators of fundamental time (and length) scales in the system, while stochastic processes help uncover the nature of turbulent accretion processes. A key method of studying time variability is through Fourier methods, the decomposition of the signal into sine waves, which yields a representation of the data in frequency space. With the extension into \textit{spectral timing} the methods built on the Fourier transform can not only help us characterize (quasi-)periodicities and stochastic processes, but also uncover the complex relationships between time, photon energy and flux in order to help build better models of accretion processes and other high-energy dynamical physics. In this Chapter, we provide a broad, but practical overview of the most important relevant methods.
51 pages, 13 figures. Published In: Bambi, C., Santangelo, A. (eds) Handbook of X-ray and Gamma-ray Astrophysics. Springer, Singapore. This revised version adds a Conclusions section, corrects a few typos (including equations) and rewrites a few sentences for clarity. Acknowledgements include a few more people who contributed comments and discussions on the previous version
References in corpus (11)
- Array Programming with NumPy
- X-ray reverberation around accreting black holes
- The corona contracts in a black-hole transient
- No Time for Dead Time: Timing analysis of bright black hole binaries with NuSTAR
- Disk, Corona, Jet Connection in the Intermediate State of MAXI J1820+070 Revealed by NICER Spectral-Timing Analysis
- Quasi-periodic pulsations in solar and stellar flares: re-evaluating their nature in the context of power-law flare Fourier spectra
- Quasi-Periodic Oscillations in Short Recurring Bursts of the Soft-Gamma Repeater J1550-5418
- Multi-timescale X-ray reverberation mapping of accreting black holes
- High frequency oscillations during magnetar flares
- Extending the and statistics to generic pulsed profiles
- Accurate X-ray Timing in the Presence of Systematic Biases With Simulation-Based Inference