Noise in the Cross-Power Spectrum of the Vela Pulsar
arXiv:1208.0039 · doi:10.1088/0004-637X/758/1/6
Abstract
We compare the noise in interferometric measurements of the Vela pulsar from ground- and space-based antennas with theoretical predictions. The noise depends on both the flux density and the interferometric phase of the source. Because the Vela pulsar is bright and scintillating, these comparisons extend into both the low and high signal-to-noise regimes. Furthermore, our diversity of baselines explores the full range of variation in interferometric phase. We find excellent agreement between theoretical expectations and our estimates of noise among samples within the characteristic scintillation scales. Namely, the noise is drawn from an elliptical Gaussian distribution in the complex plane, centered on the signal. The major axis, aligned with the signal phase, varies quadratically with the signal, while the minor axis, at quadrature, varies with the same linear coefficients. For weak signal, the noise approaches a circular Gaussian distribution. Both the variance and covariance of the noise are also affected by artifacts of digitization and correlation. In particular, we show that gating introduces correlations between nearby spectral channels.
References in corpus (5)
- DiFX: A software correlator for very long baseline interferometry using multi-processor computing environments
- Constraining the Vela Pulsar's Radio Emission Region Using Nyquist-Limited Scintillation Statistics
- Size of the Vela Pulsar's Emission Region at 18 cm Wavelength
- Ultra-High Resolution Intensity Statistics of a Scintillating Source
- Correlation Statistics of Quantized Noiselike Signals
Cited by in corpus (6)
- PSR B0329+54: Statistics of Substructure Discovered within the Scattering Disk on RadioAstron Baselines of up to 235,000 km
- Radio Pulsars
- The - Diagram: Transforming pulsar scintillation spectra to coordinates on highly anisotropic interstellar scattering screens
- Size of the Vela Pulsar's Emission Region at 18 cm Wavelength
- The Sun's magnetic (Hale) cycle and 27 day recurrences in the geomagnetic index
- Interferometric Visibility of a Scintillating Source: Statistics at the Nyquist Limit