The Hydrogen Intensity and Real-time Analysis eXperiment: 256-Element Array Status and Overview

(2021)

Authors:

Devin Crichton, Moumita Aich, Adam Amara, Kevin Bandura, Bruce A Bassett, Carlos Bengaly, Pascale Berner, Shruti Bhatporia, Martin Bucher, Tzu-Ching Chang, H Cynthia Chiang, Jean-Francois Cliche, Carolyn Crichton, Romeel Dave, Dirk IL de Villiers, Matt A Dobbs, Aaron M Ewall-Wice, Scott Eyono, Christopher Finlay, Sindhu Gaddam, Ken Ganga, Kevin G Gayley, Kit Gerodias, Tim Gibbon, Austin Gumba, Neeraj Gupta, Maile Harris, Heiko Heilgendorf, Matt Hilton, Adam D Hincks, Pascal Hitz, Mona Jalilvand, Roufurd Julie, Zahra Kader, Joseph Kania, Dionysios Karagiannis, Aris Karastergiou, Kabelo Kesebonye, Piyanat Kittiwisit, Jean-Paul Kneib, Kenda Knowles, Emily R Kuhn, Martin Kunz, Roy Maartens, Vincent MacKay, Stuart MacPherson, Christian Monstein, Kavilan Moodley, V Mugundhan, Warren Naidoo, Arun Naidu, Laura B Newburgh, Viraj Nistane, Amanda Di Nitto, Deniz Ölçek, Xinyu Pan, Sourabh Paul, Jeffrey B Peterson, Elizabeth Pieters, Carla Pieterse, Aritha Pillay, Anna R Polish, Liantsoa Randrianjanahary, Alexandre Refregier, Andre Renard, Edwin Retana-Montenegro, Ian H Rout, Cyndie Russeeawon, Alireza Vafaei Sadr, Benjamin RB Saliwanchik, Ajith Sampath, Pranav Sanghavi, Mario G Santos, Onkabetse Sengate, J Richard Shaw, Jonathan L Sievers, Oleg M Smirnov, Kendrick M Smith, Ulrich Armel Mbou Sob, Raghunathan Srianand, Pieter Stronkhorst, Dhaneshwar D Sunder, Simon Tartakovsky, Russ Taylor, Peter Timbie, Emma E Tolley, Junaid Townsend, Will Tyndall, Cornelius Ungerer, Jacques van Dyk, Gary van Vuuren, Keith Vanderlinde, Thierry Viant, Anthony Walters, Jingying Wang, Amanda Weltman, Patrick Woudt, Dallas Wulf, Anatoly Zavyalov, Zheng Zhang

Observation of the gamma-ray binary HESS J0632+057 with the H.E.S.S., MAGIC, and VERITAS telescopes

(2021)

Authors:

CB Adams, W Benbow, A Brill, JH Buckley, M Capasso, AJ Chromey, M Errando, A Falcone, KA Farrell, Q Feng, JP Finley, G Foote, L Fortson, A Furniss, A Gent, GH Gillanders, C Giuri, O Gueta, D Hanna, T Hassan, O Hervet, J Holder, B Hona, TB Humensky, W Jin, P Kaaret, M Kertzman, D Kieda, TK Kleiner, F Krennrich, S Kumar, MJ Lang, M Lundy, G Maier, CE McGrath, P Moriarty, R Mukherjee, D Nieto, M Nievas-Rosillo, S O'Brien, RA Ong, AN Otte, N Park, S Patel, K Pfrang, A Pichel, M Pohl, RR Prado, J Quinn, K Ragan, PT Reynolds, D Ribeiro, E Roache, AC Rovero, JL Ryan, M Santander, S Schlenstedt, GH Sembroski, R Shang, D Tak, VV Vassiliev, A Weinstein, DA Williams, TJ Williamson, VA Acciari, S Ansoldi, LA Antonelli, A Arbet Engels, M Artero, K Asano, D Baack, A Babić, A Baquero, U Barres de Almeida, JA Barrio, I Batković, J Becerra González, W Bednarek, L Bellizzi, E Bernardini, M Bernardos, A Berti, J Besenrieder, W Bhattacharyya, C Bigongiari, A Biland, O Blanch, H Bökenkamp, G Bonnol, Ž Bošnjak, G Busetto, R Carosi, G Ceribella, M Cerruti, Y Chai, A Chilingarian, S Cikota, SM Colak, E Colombo, JL Contreras, J Cortina, S Covino, G D'Amico, V D'Elia, P Da Vela, F Dazzi, A De Angelis, B De Lotto, M Delfino, J Delgado, C Delgado Mendez, D Depaoli, F Di Pierro, L Di Venere, E Do Souto Espiñeira, D Dominis Prester, A Donini, D Dorner, M Doro, D Elsaesser, V Fallah Ramazani, A Fattorini, MV Fonseca, L Font, C Fruck, S Fukami, Y Fukazawa, RJ García López, M Garczarczyk, S Gasparyan, M Gaug, N Giglietto, F Giordano, P Gliwny, N Godinović, JG Green, D Green, D Hadasch, A Hahn, L Heckmann, J Herrera, J Hoang, D Hrupec, M Hütten, T Inada, K Ishio, Y Iwamura, I Jiménez Martínez, J Jormanainen, L Jouvin, M Karjalainen, D Kerszberg, Y Kobayashi, H Kubo, J Kushida, A Lamastra, D Lelas, F Leone, E Lindfors, L Linhoff, S Lombardi, F Longo, R López-Coto, M López-Moya, A López-Oramas, S Loporchio, B Machado de Oliveira Fraga, C Maggio, P Majumdar, M Makariev, M Mallamaci, G Maneva, M Manganaro, K Mannheim, L Maraschi, M Mariotti, M Martínez, D Mazin, S Menchiari, S Mender, S Mićanović, D Miceli, T Miener, JM Miranda, R Mirzoyan, E Molina, A Moralejo, D Morcuende, V Moreno, E Moretti, T Nakamori, L Nava, V Neustroev, C Nigro, K Nilsson, K Nishijima, K Noda S Nozaki, Y Ohtani, T Oka, J Otero-Santos, S Paiano, M Palatiello, D Paneque, R Paoletti, JM Paredes, L Pavletić, P Peñil, M Persic, M Pihet, PG Prada Moroni, E Prandini, C Priyadarshi, I Puljak, W Rhode, M Ribó, J Rico, C Righi, A Rugliancich, L Saha, N Sahakyan, T Saito, S Sakurai, K Satalecka, FG Saturni, B Schleicher, K Schmidt, T Schweizer, J Sitarek, I Šnidarić, D Sobczynska A Spolon, A Stamerra, J Strišković, D Strom, M Strzys, Y Suda, T Surić, M Takahashi, R Takeishi, F Tavecchio, P Temnikov, T Terzić, M Teshima, L Tosti, S Truzzi, A Tutone, S Ubach, J van Scherpenberg, G Vanzo, M Vazquez Acosta, S Ventura, V Verguilov, CF Vigorito, V Vitale, I Vovk, M Will, C Wunderlich, T Yamamoto, D Zarić, H Abdalla, F Aharonian, F Ait-Benkhali, O Anguener, C Arcaro, H Ashkar, M Backes, V Barbosa Martins, M Barnard, R Batzofin, Y Becherini, D Berge, K Bernloehr, B Bi, M Boettcher, C Boisson, J Bolmont, M de Bony, M Breuhaus, R Brose, F Brun, T Bulik, S Caroff, S Casanova, T Chand, A Chen, G Cotter, J Damascene Mbarubucyeye, J Devin, A Djannati-Atai, K Egberts, J Ernenwein, S Fegan, A Fiasson, G Fichet de Clairfontaine, G Fontaine, M Fuessling, S Funk, S Gabici, G Giavitto, D Glawion, J Glicenstein, M Grondin, J Hinton, W Hofmann, T Holch, M Holler, D Horns, Z Huang, M Jamrozy, F Jankowsky, V Joshi, I Jung-Richardt, E Kasai, K Katarzynski, B Khelifi, N Komin, K Kosack, D Kostunin, S Le Stum, A Lemiere, J Lenain, F Leuschner, C Levy, T Lohse, A Luashvili, I Lypova, J Mackey, J Majumdar, D Malyshev, V Marandon, P Marchegiani, A Marcowith, G Marti'i-Devesa, R Marx, G Maurin, P Meintjes, A Mitchell, R Moderski, L Mohrmann, A Montanari, E Moulin, J Muller, T Murach, M de Naurois, A Nayerhoda, J Niemiec, A Noel, P O'Brien, S Ohm, L Olivera-Nieto, E de Ona-Wilhelmi, M Ostrowski, S Panny, M Panter, D Parsons, G Peron, V Poireau, D Prokhorov, H Prokoph, G Puehlhofer, M Punch, A Quirrenbach, P Reichherzer, A Reimer, O Reimer, M Renaud, F Rieger, C Romoli, G Rowell, B Rudak, H Rueda Ricarte, E Ruiz Velasco, V Sahakian, S Sailer, H Salzmann, D Sanchez, A Santangelo, M Sasaki, F Schuessler, H Schutte, U Schwanke, M Senniappan, J Shapopi, R Simoni, H Sol, A Specovius, S Spencer, R Steenkamp, S Steinmassl, L Sun, T Takahashi, T Tanaka, R Terrier, N Tsuji, Y Uchiyama, C van Eldik, B van Soelen, J Veh, C Venter, J Vink, S Wagner, R White, A Wierzcholska, YW Wong, M Zacharias, D Zargaryan, A Zdziarski, A Zech, S Zhu, S Zouari, N Zywucka, Y Moritani, DF Torres

The Thousand-Pulsar-Array programme on MeerKAT: -- VI. Pulse widths of a large and diverse sample of radio pulsars

(2021)

Authors:

B Posselt, A Karastergiou, S Johnston, A Parthasarathy, Mj Keith, Ls Oswald, X Song, P Weltevrede, Ed Barr, S Buchner, M Geyer, M Kramer, Dj Reardon, M Serylak, Rm Shannon, R Spiewak, V Venkatraman Krishnan

Abstract:

We present pulse width measurements for a sample of radio pulsars observed with the MeerKAT telescope as part of the Thousand-Pulsar-Array (TPA) programme in the MeerTime project. For a centre frequency of 1284 MHz, we obtain 762 $W_{10}$ measurements across the total bandwidth of 775 MHz, where $W_{10}$ is the width at the 10% level of the pulse peak. We also measure about 400 $W_{10}$ values in each of the four or eight frequency sub-bands. Assuming, the width is a function of the rotation period P, this relationship can be described with a power law with power law index $\mu=-0.29\pm 0.03$. However, using orthogonal distance regression, we determine a steeper power law with $\mu=-0.63\pm 0.06$. A density plot of the period-width data reveals such a fit to align well with the contours of highest density. Building on a previous population synthesis model, we obtain population-based estimates of the obliquity of the magnetic axis with respect to the rotation axis for our pulsars. Investigating the width changes over frequency, we unambiguously identify a group of pulsars that have width broadening at higher frequencies. The measured width changes show a monotonic behaviour with frequency for the whole TPA pulsar population, whether the pulses are becoming narrower or broader with increasing frequency. We exclude a sensitivity bias, scattering and noticeable differences in the pulse component numbers as explanations for these width changes, and attempt an explanation using a qualitative model of five contributing Gaussian pulse components with flux density spectra that depend on their rotational phase.

Are Delayed Radio Flares Common in Tidal Disruption Events? The Case of the TDE iPTF16fnl

(2021)

Authors:

Assaf Horesh, Itai Sfaradi, Rob Fender, David A Green, David RA Williams, Joe Bright

Relation of Cyclotron Resonant Energy and Luminosity in a Strongly Magnetized Neutron Star GRO J1008-57 Observed by Insight-HXMT

The Astrophysical Journal American Astronomical Society 919:1 (2021) 33-33

Authors:

X Chen, W Wang, YM Tang, YZ Ding, YL Tuo, AA Mushtukov, O Nishimura, SN Zhang, MY Ge, LM Song, FJ Lu, S Zhang, JL Qu

Abstract:

Cyclotron line scattering features are detected in a few tens of X-ray pulsars (XRPs) and used as direct indicators of a strong magnetic field at the surface of accreting neutron stars (NSs). In a few cases, cyclotron lines are known to be variable with accretion luminosity of XRPs. It is accepted that the observed variations of cyclotron line scattering features are related to variations of geometry and dynamics of accretion flow above the magnetic poles of a NS. A positive correlation between the line centroid energy and luminosity is typical for sub-critical XRPs, where the accretion results in hot spots at the magnetic poles. The negative correlation was proposed to be a specific feature of bright super-critical XRPs, where radiation pressure supports accretion columns above the stellar surface. Cyclotron line in spectra of Be-transient X-ray pulsar GRO J1008-57 is detected at energies from $\sim 75 -90$ keV, the highest observed energy of cyclotron line feature in XRPs. We report the peculiar relation of cyclotron line centroid energies with luminosity in GRO J1008-57 during the Type II outburst in August 2017 observed by Insight-HXMT. The cyclotron line energy was detected to be negatively correlated with the luminosity at $3.2\times 10^{37}\,\ergs