Search for dark matter annihilation signals in the H.E.S.S. Inner galaxy survey

Physical Review Letters American Physical Society 129:11 (2022) 111101

Authors:

H Abdalla, F Aharonian, F Ait Benkhali, Eo Angüner, C Armand, H Ashkar, M Backes, V Baghmanyan, V Barbosa Martins, R Batzofin, Y Becherini, D Berge, K Bernlöhr, B Bi, M Böttcher, 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-Ataï, 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 Katarzyński

Abstract:

The central region of the Milky Way is one of the foremost locations to look for dark matter (DM) signatures. We report the first results on a search for DM particle annihilation signals using new observations from an unprecedented γ-ray survey of the Galactic Center (GC) region, i.e., the Inner Galaxy Survey, at very high energies (≳100  GeV) performed with the H.E.S.S. array of five ground-based Cherenkov telescopes. No significant γ-ray excess is found in the search region of the 2014-2020 dataset and a profile likelihood ratio analysis is carried out to set exclusion limits on the annihilation cross section ⟨σv⟩. Assuming Einasto and Navarro-Frenk-White (NFW) DM density profiles at the GC, these constraints are the strongest obtained so far in the TeV DM mass range. For the Einasto profile, the constraints reach ⟨σv⟩ values of 3.7×10^{-26}  cm^{3} s^{-1} for 1.5 TeV DM mass in the W^{+}W^{-} annihilation channel, and 1.2×10^{-26}  cm^{3} s^{-1} for 0.7 TeV DM mass in the τ^{+}τ^{-} annihilation channel. With the H.E.S.S. Inner Galaxy Survey, ground-based γ-ray observations thus probe ⟨σv⟩ values expected from thermal-relic annihilating TeV DM particles.

The eccentric millisecond pulsar, PSR J0955−6150

Astronomy & Astrophysics EDP Sciences 665 (2022) a53

Authors:

M Serylak, V Venkatraman Krishnan, PCC Freire, TM Tauris, M Kramer, M Geyer, A Parthasarathy, M Bailes, MCI Bernadich, S Buchner, M Burgay, F Camilo, A Karastergiou, ME Lower, A Possenti, DJ Reardon, RM Shannon, R Spiewak, IH Stairs, W van Straten

Connecting radio emission to AGN wind properties with broad absorption line quasars

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 515:4 (2022) 5159-5174

Authors:

JW Petley, LK Morabito, DM Alexander, AL Rankine, VA Fawcett, DJ Rosario, JH Matthews, TM Shimwell, A Drabent

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

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