Data

Parkes observations for project P1173 semester 2022OCTS_07

Commonwealth Scientific and Industrial Research Organisation
Mandow, Rami ; Dawson, Joanne ; Hobbs, George ; Dai, Shi ; Zic, Andrew ; Marshman, Tommy
Viewed: [[ro.stat.viewed]] Cited: [[ro.stat.cited]] Accessed: [[ro.stat.accessed]]
ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.25919/30k2-km98&rft.title=Parkes observations for project P1173 semester 2022OCTS_07&rft.identifier=https://doi.org/10.25919/30k2-km98&rft.publisher=Commonwealth Scientific and Industrial Research Organisation&rft.description=Spider pulsar systems are compact binary pulsars with low-mass companions in tight orbits, where the\rprimary pulsar is ablating the secondary through the output of high-energy radiation and pulsar wind due\rto proximity. These systems present an interesting opportunity to probe the mechanisms related to the destruction of these low-mass bodies in the radio regime, as debris surrounding the ablated secondary companion causes the pulsar emission to propagate and scatter as it moves through it, along our line of sight - revealing details of the complex, turbulent structure of this region. Recent studies have shown that the eclipsing region can cause pulsar signals to scatter, revealing small-scale structure of the turbulent field, as well as a strong variation in the pulsar’s polarsiation, rotation measure and dispersion measure. Under this proposal, we wish to study two known spider pulsars for their full orbit with the Parkes UWL capability – which has not been achieved by any other telescope. This will give us the opportunity to analyse he eclipsing effects of these systems.&rft.creator=Mandow, Rami &rft.creator=Dawson, Joanne &rft.creator=Hobbs, George &rft.creator=Dai, Shi &rft.creator=Zic, Andrew &rft.creator=Marshman, Tommy &rft.date=2023&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 2022.&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

Licence & Rights:

Open Licence view details
CC-BY

Creative Commons Attribution 4.0 International Licence
https://creativecommons.org/licenses/by/4.0/

Data is accessible online and may be reused in accordance with licence conditions

All Rights (including copyright) CSIRO 2022.

Access:

Open view details

Accessible for free

Contact Information



Full description

Spider pulsar systems are compact binary pulsars with low-mass companions in tight orbits, where the\r
primary pulsar is ablating the secondary through the output of high-energy radiation and pulsar wind due\r
to proximity. These systems present an interesting opportunity to probe the mechanisms related to the destruction of these low-mass bodies in the radio regime, as debris surrounding the ablated secondary companion causes the pulsar emission to propagate and scatter as it moves through it, along our line of sight - revealing details of the complex, turbulent structure of this region. Recent studies have shown that the eclipsing region can cause pulsar signals to scatter, revealing small-scale structure of the turbulent field, as well as a strong variation in the pulsar’s polarsiation, rotation measure and dispersion measure. Under this proposal, we wish to study two known spider pulsars for their full orbit with the Parkes UWL capability – which has not been achieved by any other telescope. This will give us the opportunity to analyse he eclipsing effects of these systems.

Available: 2023-03-20

Data time period: 2022-10-01 to 2023-03-31

This dataset is part of a larger collection

Click to explore relationships graph
Subjects

User Contributed Tags    

Login to tag this record with meaningful keywords to make it easier to discover

ACN 633 798 857