Czasopismo
2020
|
Vol. 70, No. 2
|
87--100
Tytuł artykułu
Autorzy
Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Języki publikacji
Abstrakty
Using the results of the IllustrisTNG simulation we estimate the dispersion measure which may be attributed to halos of so called host galaxies of fast radio bursts sources (FRBs). Our results show that in contradiction to assumptions used to show the applicability of FRBs to cosmological tests, both the dispersion measure and its standard deviation calculated for host galaxies with given stellar mass in general increase with the redshift. The effect is not strong and cosmological tests using FRBs will be possible, but to preserve the level of statistical uncertainty the number of FRBs with known redshift in a sample should be increased by 15%-35% depending on circumstances. We show various statistical characteristics of ionized gas surrounding galaxies, the resulting dispersion measure and their dependence on the host galaxy stellar mass, redshift, and the projected distance of a FRB source from its host center.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
87--100
Opis fizyczny
Bibliogr. 25 poz., tab., wykr.
Twórcy
autor
- Astronomical Observatory, University of Warsaw, Al. Ujazdowskie 4, 00-478 Warszawa, Poland
Bibliografia
- Bhandari, S., et al. 2020, ApJ, 895, L37.
- Chittidi, J.S., et al. 2020, arXiv2005.13158.
- Cordes, J.M., and Chatterjee, S. 2019, Ann. Rev. Astron. Astrophys., 57, 417 (CC19).
- Deng, W., and Zhang, B. 2014, ApJ, 783, L35.
- Gao, H., Li, Z., and Zhang, B. 2014, ApJ, 788, 189.
- Jaroszynski, M. 2019, MNRAS, 484, 1637 (J19).
- Licquia, T.C., and Newman, J.A. 2015, ApJ, 806, 96.
- Lorimer, D. 2016, Nature, 530, 427.
- Lorimer, D.R., Bailes, M., McLaughlin, M.A., Narkevic, D.J., and Crawford, F. 2007, Science, 318, 777.
- Macquart, J.-P., et al. 2020, Nature, 581, 391.
- Marinacci, F., et al. 2018, MNRAS, 480, 5113.
- Metzger, B.D., Margalit, B., and Sironi, L. 2019, MNRAS, 485, 4091.
- Naiman, J.P., et al. 2018, MNRAS, 477, 1206.
- Nelson, D., et al. 2018, MNRAS, 475, 624.
- Nelson, D., et al. 2019, Computational Astrophysics and Cosmology, 6, 2.
- Pillepich, A., et al. 2018, MNRAS, 475, 648.
- Prochaska, J.X., and Zheng, Y. 2019, MNRAS, 485, 648.
- Springel, V., et al. 2018, MNRAS, 475, 676.
- Thornton, D., et al. 2013, Science, 341, 53.
- Yang, Y.-P., and Zhang, B. 2016, ApJ, 830, L31.
- Yu, H., and Wang, F.Y. 2017, A&A, 606, 3.
- Walters, A., Weltman, A., Gaensler, B.M., Ma, Y.-Z., and Witzemann, A. 2018, ApJ, 856, 65.
- Zhang, B. 2018, ApJ, 867, L21.
- Zhang, G.Q, Yu, H., He, J.H., and Wang, F.Y. 2020, arXiv:2007.13935.
- Zhou, B., Li, X., Wang, T., Fan, Y.-Z., and Wei, D.-M. 2014, Phys. Rev. D, 89, 107303.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-138fb023-b4c0-4033-80d5-688a3fd8c8d7