Applying clock comparison methods to pulsar timing observations

Author:

Chen Siyuan123ORCID,Vernotte François24,Rubiola Enrico245

Affiliation:

1. Station de Radioastronomie de Nançay, Observatoire de Paris, PSL University, CNRS, Université d’Orléans, F-18330 Nançay, France

2. FEMTO-ST, Department of Time and Frequency, UBFC and CNRS, F-25030 Besançon, France

3. Laboratoire de Physique et Chimie de l’Environnement et de l’Espace, LPC2E UMR7328, Université d’Orléans, CNRS, F-45071 Orléans, France

4. Observatoire des Sciences de l’Univers THETA, UBFC and CNRS, F-20510 Besançon, France

5. Divsion of Quantum Metrology and Nanotechnology, Istituto Nazionale di Ricerca Metrologica INRiM, I-10135 Torino, Italy

Abstract

ABSTRACT Frequency metrology outperforms any other branch of metrology in accuracy (parts in 10−16) and small fluctuations (<10−17). In turn, among celestial bodies, the rotation speed of millisecond pulsars is by far the most stable (<10−18). Therefore, the precise measurement of the time of arrival (TOA) of pulsar signals is expected to disclose information about cosmological phenomena, and to enlarge our astrophysical knowledge. Related to this topic, Pulsar Timing Array projects have been developed and operated for the last decades. The TOAs from a pulsar can be affected by local emission and environmental effects, in the direction of the propagation through the interstellar medium or universally by gravitational waves from super massive black hole binaries. These effects (signals) can manifest as a low-frequency fluctuation over time, phenomenologically similar to a red noise, while the remaining pulsar intrinsic and instrumental background (noise) are white. This article focuses on the frequency metrology of pulsars. From our standpoint, the pulsar is an accurate clock, to be measured simultaneously with several telescopes in order to reject the uncorrelated white noise. We apply the modern statistical methods of time-and-frequency metrology to simulated pulsar data, and we show the detection limit of the correlated red noise signal between telescopes.

Funder

Laboratório Central de Microscopia Eletrônica, Universidade Federal de Santa Catarina

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The Statistics of the Cross-Spectrum and the Spectrum Average: Generalization to Multiple Instruments;IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control;2022-08

2. Response and Uncertainty of the Parabolic Variance PVAR to Noninteger Exponents of Power Law;IEEE Transactions on Instrumentation and Measurement;2021

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