High signal-to-noise ratio observations and the ultimate limits of precision pulsar timing
arXiv:1108.0812 · doi:10.1111/j.1365-2966.2011.19578.x
Abstract
We demonstrate that the sensitivity of high-precision pulsar timing experiments will be ultimately limited by the broadband intensity modulation that is intrinsic to the pulsar's stochastic radio signal. That is, as the peak flux of the pulsar approaches that of the system equivalent flux density, neither greater antenna gain nor increased instrumental bandwidth will improve timing precision. These conclusions proceed from an analysis of the covariance matrix used to characterise residual pulse profile fluctuations following the template matching procedure for arrival time estimation. We perform such an analysis on 25 hours of high-precision timing observations of the closest and brightest millisecond pulsar, PSR J0437-4715. In these data, the standard deviation of the post-fit arrival time residuals is approximately four times greater than that predicted by considering the system equivalent flux density, mean pulsar flux and the effective width of the pulsed emission. We develop a technique based on principal component analysis to mitigate the effects of shape variations on arrival time estimation and demonstrate its validity using a number of illustrative simulations. When applied to our observations, the method reduces arrival time residual noise by approximately 20%. We conclude that, owing primarily to the intrinsic variability of the radio emission from PSR J0437-4715 at 20 cm, timing precision in this observing band better than 30 - 40 ns in one hour is highly unlikely, regardless of future improvements in antenna gain or instrumental bandwidth. We describe the intrinsic variability of the pulsar signal as stochastic wideband impulse modulated self-noise (SWIMS) and argue that SWIMS will likely limit the timing precision of every millisecond pulsar currently observed by Pulsar Timing Array projects as larger and more sensitive antennae are built in the coming decades.
16 pages, 9 figures, accepted for publication in MNRAS. Updated version: added DOI and changed manuscript to reflect changes in the final published version
References in corpus (11)
- TEMPO2, a new pulsar timing package. I: Overview
- Tests of general relativity from timing the double pulsar
- PSRCHIVE and PSRFITS An Open Approach to Radio Pulsar Data Storage and Analysis
- Switched magnetospheric regulation of pulsar spin-down
- A periodically active pulsar giving insight into magnetospheric physics
- Upper bounds on the low-frequency stochastic gravitational wave background from pulsar timing observations: current limits and future prospects
- Pulsar Nulling and Mode Changing
- Assessing the Role of Spin Noise in the Precision Timing of Millisecond Pulsars
- Radio Emission Signatures in the Crab Pulsar
- The optimal filters for the construction of the ensemble pulsar time
- Correlation Statistics of Quantized Noiselike Signals
Cited by in corpus (67)
- The Parkes Pulsar Timing Array Project
- The International Pulsar Timing Array: First Data Release
- Limits on the Stochastic Gravitational Wave Background from the North American Nanohertz Observatory for Gravitational Waves
- Supergiant Pulses from Extragalactic Neutron Stars
- The International Pulsar Timing Array: Second data release
- Common-red-signal analysis with 24-yr high-precision timing of the European Pulsar Timing Array: Inferences in the stochastic gravitational-wave background search
- Measurement and correction of variations in interstellar dispersion in high-precision pulsar timing
- The Parkes Pulsar Timing Array
- The Parkes Pulsar Timing Array Third Data Release
- The MeerKAT Telescope as a Pulsar Facility: System verification and early science results from MeerTime
- Gravitational-wave Limits from Pulsar Timing Constrain Supermassive Black Hole Evolution
- The gravitational-wave background null hypothesis: Characterizing noise in millisecond pulsar arrival times with the Parkes Pulsar Timing Array
- The NANOGrav 12.5 yr Data Set: Observations and Narrowband Timing of 47 Millisecond Pulsars
- Limitations in timing precision due to single-pulse shape variability in millisecond pulsars
- The Parkes Pulsar Timing Array Project: Second data release
- Parkes Pulsar Timing Array constraints on ultralight scalar-field dark matter
- The NANOGrav 12.5-year Data Set: Wideband Timing of 47 Millisecond Pulsars
- Searching for gravitational wave memory bursts with the Parkes Pulsar Timing Array
- Identifying and mitigating noise sources in precision pulsar timing data sets
- Radio Continuum Surveys with Square Kilometre Array Pathfinders
- An Asteroid Belt Interpretation for the Timing Variations of the Millisecond Pulsar B1937+21
- High-fidelity radio astronomical polarimetry using a millisecond pulsar as a polarized reference source
- Pulsar timing noise from superfluid turbulence
- Wide-Band, Low-Frequency Pulse Profiles of 100 Radio Pulsars with LOFAR
- Measuring pulse times of arrival from broadband pulsar observations
- Pulsar-black hole binaries: prospects for new gravity tests with future radio telescopes
- Frequency-Dependent Template Profiles for High Precision Pulsar Timing
- Measurements of pulse jitter and single-pulse variability in millisecond pulsars using MeerKAT
- A 24-Hour Global Campaign To Assess Precision Timing of the Millisecond Pulsar J1713+0747
- Modelling and mitigating refractive propagation effects in precision pulsar timing observations
- Pulse intensity modulation and the timing stability of millisecond pulsars: A case study of PSR J1713+0747
- Variability, polarimetry, and timing properties of single pulses from PSR J1713+0747 using the Large European Array for Pulsars
- Timing, polarimetry and physics of the bright, nearby millisecond pulsar PSR J0437-4715 - a single-pulse perspective
- Single pulse and profile variability study of PSR J1022+1001
- Improving the precision of pulsar timing through polarization statistics
- Wide-band Profile Domain Pulsar Timing Analysis
- Observations of Low-Frequency Radio Emission from Millisecond Pulsars and Multipath Propagation in the Interstellar Medium
- Upgraded antennas for pulsar observations in the Argentine Institute of Radio astronomy
- Pulsar Timing Arrays: Status and Techniques
- Pulsar Timing Techniques
- Is there a spectral turnover in the spin noise of millisecond pulsars?
- Spin dynamics of a millisecond pulsar orbiting closely around a massive black hole
- A single pulse study of PSR J1022+1001
- Pulsar Timing Array Experiments
- A comparative analysis of pulse time-of-arrival creation methods
- Flux density monitoring of 89 millisecond pulsars with MeerKAT
- Searching for Millisecond Pulsars: Surveys, Techniques and Prospects
- Profile changes associated with DM events in PSR J1713+0747
- Size of the Vela Pulsar's Emission Region at 18 cm Wavelength
- Revisiting profile instability of J1022+1001
- Multi-frequency study of the peculiar pulsars PSR B0919+06 and PSR B1859+07
- Optimization of NANOGrav's Time Allocation for Maximum Sensitivity to Single Sources
- On Frequency-Dependent Dispersion Measures and Extreme Scattering Events
- A Bayesian method for pulsar template generation
- Improving Pulsar Timing Precision with Single Pulses
- PSR J0437-4715: The Argentine Institute of Radioastronomy 2019-2020 Observational Campaign
- Reducing instrumental errors in Parkes Pulsar Timing Array data
- Multifrequency behaviour of the anomalous events of PSR J0922+0638
- A Measurement of Source Noise at Low Frequency: Implications for Modern Interferometers
- Strong lensing interferometry for compact binaries
- Low-frequency pulse-jitter measurement with the uGMRT I : PSR J04374715
- The ORT and the uGMRT Pulsar Monitoring Program : Pulsar Timing Irregularities & the Gaussian Process Realization
- Variability, polarimetry, and timing properties of single pulses from PSR J2222-0137 using FAST
- The Indian Pulsar Timing Array Data Release 2: II. Customised Single-Pulsar Noise Analysis and Noise Budget
- Deciphering Profile Stability in Millisecond Pulsars: Timescales, Frequency Evolution, and Implications on Emission Mechanisms
- Noise in Maps of the Sun at Radio Wavelengths I: Theoretical Considerations
- Mode changing in J19093744: the most precisely timed pulsar