Astrophysical gravitational-wave echoes from galactic nuclei

Monthly Notices of the Royal Astronomical Society Oxford University Press 515:3 (2022) 3299-3318

Authors:

László Gondán, Bence Kocsis

Abstract:

Galactic nuclei (GNs) are dense stellar environments abundant in gravitational-wave (GW) sources for the Laser Interferometer Gravitational-Wave Observatory (LIGO), Virgo, and Kamioka Gravitational Wave Detector (KAGRA). The GWs may be generated by stellar-mass black hole (BH) or neutron star mergers following gravitational bremsstrahlung, dynamical scattering encounters, Kozai–Lidov-type oscillations driven by the central supermassive black hole (SMBH), or gas-assisted mergers if present. In this paper, we examine a smoking gun signature to identify sources in GNs: the GWs scattered by the central SMBH. This produces a secondary signal, an astrophysical GW echo, which has a very similar time–frequency evolution as the primary signal but arrives after a time delay. We determine the amplitude and time-delay distribution of the GW echo as a function of source distance from the SMBH. Between ∼10 per cent and 90 per cent of the detectable echoes arrive within ∼(1--100)M6s after the primary GW for sources between 10 and 104 Schwarzschild radius, where M6=MSMBH,z/ (106M), and MSMBH, z is the observer-frame SMBH mass. The echo arrival times are systematically longer for high signal-to-noise ratio (SNR) primary GWs, where the GW echo rays are scattered at large deflection angles. In particular, ∼10 per cent--90 per cent of the distribution is shifted to ∼(5--1800)M6s for sources, where the lower limit of echo detection is 0.02 of the primary signal amplitude. We find that ∼5 per cent--30 per cent(⁠∼1 per cent--7 per cent⁠) of GW sources have an echo amplitude larger than 0.2–0.05 times the amplitude of the primary signal if the source distance from the SMBH is 50 (200) Schwarzschild radius. Non-detections can rule out that a GW source is near an SMBH.

Search for dark matter annihilation signals in the H.E.S.S. Inner Galaxy Survey

(2022)

Authors:

HESS Collaboration, H Abdalla, F Aharonian, F Ait Benkhali, EO Anguner, C Armand, H Ashkar, M Backes, V Baghmanyan, V Barbosa Martins, R Batzofin, Y Becherini, D Berge, K Bernlohr, B Bi, M Bottcher, J Bolmont, M de Bony de Lavergne, R Brose, F Brun, F Cangemi, S Caroff, M Cerruti, T Chand, A Chen, G Cotter, J Damascene Mbarubucyeye, J Devin, A Djannati-Ataı, A Dmytriiev, V Doroshenko, K Egberts, A Fiasson, G Fichet de Clairfontaine, G Fontaine, S Funk, S Gabici, G Giavitto, D Glawion, JF Glicenstein, M-H Grondin, JA Hinton, W Hofmann, TL Holch, M Holler, D Horns, Zhiqiu Huang, M Jamrozy, F Jankowsky, E Kasai, K Katarzynski, U Katz, B Khelifi, W Kluzniak, Nu Komin, K Kosack, D Kostunin, G Lamanna, M Lemoine-Goumard, J-P Lenain, F Leuschner, T Lohse, A Luashvili, I Lypova, J Mackey, D Malyshev, D Malyshev, V Marandon, P Marchegiani, G Martı-Devesa, R Marx, G Maurin, M Meyer, A Mitchell, R Moderski, A Montanari, E Moulin, J Muller, M de Naurois, J Niemiec, A Priyana Noel, S Ohm, L Olivera-Nieto, E de Ona Wilhelmi, M Ostrowski, S Panny, M Panter, RD Parsons, G Peron, V Poireau, H Prokoph, G Puhlhofer, M Punch, A Quirrenbach, P Reichherzer, A Reimer, O Reimer, M Renaud, F Rieger, G Rowell, B Rudak, H Rueda Ricarte, E Ruiz-Velasco, V Sahakian, H Salzmann, A Santangelo, M Sasaki, F Schussler, HM Schutte, U Schwanke, M Senniappan, JNS Shapopi, H Sol, A Specovius, S Spencer, L Stawarz, C Stegmann, S Steinmassl, C Steppa, T Takahashi, T Tanaka, R Terrier, C Thorpe-Morgan, M Tluczykont, M Tsirou, N Tsuji, Y Uchiyama, C van Eldik, J Veh, J Vink, SJ Wagner, R White, A Wierzcholska, Yu Wun Wong, M Zacharias, D Zargaryan, AA Zdziarski, A Zech, SJ Zhu, S Zouari, N Zywucka

Modelling the spectra of the kilonova AT2017gfo – I. The photospheric epochs

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 515:1 (2022) 631-651

Authors:

JH Gillanders, SJ Smartt, SA Sim, A Bauswein, S Goriely

The MeerTime Pulsar Timing Array: A census of emission properties and timing potential

Publications of the Astronomical Society of Australia Cambridge University Press 39 (2022) e027

Authors:

R Spiewak, M Bailes, MT Miles, A Parthasarathy, DJ Reardon, M Shamohammadi, RM Shannon, NDR Bhat, S Buchner, AD Cameron, F Camilo, M Geyer, S Johnston, A Karastergiou, M Keith, M Kramer, M Serylak, W van Straten, G Theureau, V Venkatraman Krishnan

Abstract:

The millisecond pulsar J1713+0747 underwent a sudden and significant pulse shape change between April 16 and 17, 2021 (MJDs 59320 and 59321). Subsequently, the pulse shape gradually recovered over the course of several months. We report the results of continued multi-frequency radio observations of the pulsar made using the Canadian Hydrogen Intensity Mapping Experiment (CHIME) and the 100-meter Green Bank Telescope (GBT) in a three-year period encompassing the shape change event, between February 2020 and February 2023. As of February 2023, the pulse shape had returned to a state similar to that seen before the event, but with measurable changes remaining. The amplitude of the shape change and the accompanying TOA residuals display a strong non-monotonic dependence on radio frequency, demonstrating that the event is neither a glitch (the effects of which should be independent of radio frequency, $\nu$) nor a change in dispersion measure (DM) alone (which would produce a delay proportional to $\nu^{-2}$). However, it does bear some resemblance to the two previous "chromatic timing events" observed in J1713+0747 (Demorest et al. 2013; Lam et al. 2016), as well as to a similar event observed in PSR J1643-1224 in 2015 (Shannon et al. 2016).Comment: 19 pages, 8 figures. Submitted to ApJ. Data available at https://doi.org/10.5281/zenodo.723645

Constraints on the magnetic field structure in accreting compact objects from aperiodic variability

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 515:1 (2022) 571-580

Authors:

Juhani Mönkkönen, Sergey S Tsygankov, Alexander A Mushtukov, Victor Doroshenko, Valery F Suleimanov, Juri Poutanen