Data

Parkes observations for project P1362 semester 2025OCTS_01

Commonwealth Scientific and Industrial Research Organisation
Colom I Bernadich, Miquel ; Possenti, Andrea ; Kramer, Michael ; Lyne, Andrew ; Bailes, Matthew ; Stappers, Benjamin ; Cameron, Andrew ; Carleo, Amodio ; Perrodin, Delphine
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.25919/f1f1-3n79&rft.title=Parkes observations for project P1362 semester 2025OCTS_01&rft.identifier=https://doi.org/10.25919/f1f1-3n79&rft.publisher=Commonwealth Scientific and Industrial Research Organisation&rft.description=PSR J1757-1854 is the most relativistic galactic double neutron star system. Its eccentricity makes it an ideal playground for gravity experiments with pulsar timing. Via observations of its profile evolution, we can constraint its rate of geodetic precession. Currently, there are four possible geometric configurations that explain the time evolution of the polarisation swing. The geodetic precession and the Lense-Thirring effect will eventually manifest themselves in the post-Keplerian parameters within the next decade, allowing for two further tests of gravity. We propose a single observation with a maximum integration of ~8 hours allowed by LST time for this semester. We will inspect the polarisation properties of this observation, and we will add the ToAs to a global timing campaign. These observations will be added to joint GBT and (past) MeerKAT observations, and they will be part of a long-term, global observational program of this pulsar.&rft.creator=Colom I Bernadich, Miquel &rft.creator=Possenti, Andrea &rft.creator=Kramer, Michael &rft.creator=Lyne, Andrew &rft.creator=Bailes, Matthew &rft.creator=Stappers, Benjamin &rft.creator=Cameron, Andrew &rft.creator=Carleo, Amodio &rft.creator=Perrodin, Delphine &rft.date=2025&rft.edition=v1&rft_rights=Creative Commons Attribution 4.0 International Licence https://creativecommons.org/licenses/by/4.0/&rft_rights=Data is accessible online and may be reused in accordance with licence conditions&rft_rights=All Rights (including copyright) CSIRO 2025.&rft_subject=pulsars&rft_subject=neutron stars&rft_subject=Astronomical sciences not elsewhere classified&rft_subject=Astronomical sciences&rft_subject=PHYSICAL SCIENCES&rft.type=dataset&rft.language=English Access the data

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PSR J1757-1854 is the most relativistic galactic double neutron star system. Its eccentricity makes it an ideal playground for gravity experiments with pulsar timing. Via observations of its profile evolution, we can constraint its rate of geodetic precession. Currently, there are four possible geometric configurations that explain the time evolution of the polarisation swing. The geodetic precession and the Lense-Thirring effect will eventually manifest themselves in the post-Keplerian parameters within the next decade, allowing for two further tests of gravity. We propose a single observation with a maximum integration of ~8 hours allowed by LST time for this semester. We will inspect the polarisation properties of this observation, and we will add the ToAs to a global timing campaign. These observations will be added to joint GBT and (past) MeerKAT observations, and they will be part of a long-term, global observational program of this pulsar.

Available: 2025-10-29

Data time period: 2025-10-01 to 2026-03-31

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ACN 633 798 857