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Using archival data from the 42 foot telescope at the Jodrell Bank Observatory, we produce daily stacks of aligned giant pulses for the Crab pulsar, to study changes to the daily profiles between April 2012 to December 2016. From these, we…

High Energy Astrophysical Phenomena · Physics 2023-12-20 Thierry Serafin Nadeau , Marten H. van Kerkwijk , Cees G. Bassa , Ben W. Stappers , Mitchell B. Mickaliger , Andrew G. Lyne

One of the most intriguing results from the gamma-ray instruments in orbit has been the detection of powerful flares from the Crab Nebula. These flares challenge our understanding of pulsar wind nebulae and models for particle acceleration.…

We reproduce the broadband spectrum of Crab pulsar, from UV to very high energy gamma-rays - nearly ten decades in energy, within the framework of the cyclotron-self-Compton model. Emission is produced by two counter-streaming beams within…

High Energy Astrophysical Phenomena · Physics 2015-06-11 Maxim Lyutikov

We use a modified outer gap model to study the multi-frequency phase-resolved spectra of the Crab pulsar. The emissions from both poles contribute to the light curve and the phase-resolved spectra. Using the synchrotron self-Compton…

Astrophysics · Physics 2010-11-11 Anisia P. S. Tang , J. Takata , J. J. Jia , K. S. Cheng

Neutron stars are fascinating astrophysical objects immersed in strong gravitational and electromagnetic fields, at the edge of our current theories. These stars manifest themselves mostly as pulsars, emitting a timely very stable and…

High Energy Astrophysical Phenomena · Physics 2016-09-28 J. Pétri

Strong magnetic fields, synchrotron emission, and Compton scattering are omnipresent in compact celestial X-ray sources. Emissions in the X-ray energy band are consequently expected to be linearly polarized. X-ray polarimetry provides a…

High Energy Astrophysical Phenomena · Physics 2017-06-29 M. Chauvin , H. -G. Florén , M. Friis , M. Jackson , T. Kamae , J. Kataoka , T. Kawano , M. Kiss , V. Mikhalev , T. Mizuno , N. Ohashi , T. Stana , H. Tajima , H. Takahashi , N. Uchida , M. Pearce

Searching for the physical mechanism that can excite the coherent radio emission in pulsars is still an enigmatic problem. A wealth of high quality observations exist, which over the years have been instrumental in putting stringent…

Astrophysics of Galaxies · Physics 2013-04-09 Dipanjan Mitra

The Crab pulsar (PSR B0531+21) provides an unusually rich test bed for statistical studies of high-energy photon-counting data, owing to its extreme brightness and the contrasting behavior of its main pulse (MP) and interpulse (IP)…

We show that the proportionately spaced emission bands in the dynamic spectrum of the Crab pulsar (Hankins T. H. & Eilek J. A., 2007, ApJ, 670, 693) fit the oscillations of the square of a Bessel function whose argument exceeds its order.…

Astrophysics · Physics 2009-11-13 H. Ardavan , A. Ardavan , J. Singleton , M. Perez

Rotation-powered radio pulsars are born with inferred initial rotation periods of order 300 ms (some as short as 20 ms) in core-collapse supernovae. In the traditional picture, this fast rotation is the result of conservation of angular…

Astrophysics · Physics 2009-11-11 John M. Blondin , Anthony Mezzacappa

We performed Monte Carlo simulations of different properties of pulsar radio emission, such as: pulsar periods, pulse-widths, inclination angles and rates of occurrence of interpulse emission (IP). We used recently available large data sets…

Astrophysics of Galaxies · Physics 2011-06-29 Krzysztof Maciesiak , Janusz Gil , Valério A. R. M. Ribeiro

The accelerative expansion of the Crab nebula's outer envelope is a mystery in dynamics as a conventional expanding blast wave decelerates when bumping into the surrounding interstellar medium. Here we show that the strong relativistic…

Solar and Stellar Astrophysics · Physics 2015-05-30 Yang Gao , Chung K. Law

We present direct upper limits on gravitational wave emission from the Crab pulsar using data from the first nine months of the fifth science run of the Laser Interferometer Gravitational-wave Observatory (LIGO). These limits are based on…

Astrophysics · Physics 2017-01-23 The LIGO Scientific Collaboration , B. Abbott , R. Abbott , R. Adhikari , P. Ajith , B. Allen , G. Allen , R. Amin , S. B. Anderson , W. G. Anderson , M. A. Arain , M. Araya , H. Armandula , P. Armor , Y. Aso , S. Aston , P. Aufmuth , C. Aulbert , S. Babak , S. Ballmer , H. Bantilan , B. C. Barish , C. Barker , D. Barker , B. Barr , P. Barriga , M. A. Barton , M. Bastarrika , K. Bayer , J. Betzwieser , P. T. Beyersdorf , I. A. Bilenko , G. Billingsley , R. Biswas , E. Black , K. Blackburn , L. Blackburn , D. Blair , B. Bland , T. P. Bodiya , L. Bogue , R. Bork , V. Boschi , S. Bose , P. R. Brady , V. B. Braginsky , J. E. Brau , M. Brinkmann , A. Brooks , D. A. Brown , G. Brunet , A. Bullington , A. Buonanno , O. Burmeister , R. L. Byer , L. Cadonati , G. Cagnoli , J. B. Camp , J. Cannizzo , K. Cannon , J. Cao , L. Cardenas , T. Casebolt , G. Castaldi , C. Cepeda , E. Chalkley , P. Charlton , S. Chatterji , S. Chelkowski , Y. Chen , N. Christensen , D. Clark , J. Clark , T. Cokelaer , R. Conte , D. Cook , T. Corbitt , D. Coyne , J. D. E. Creighton , A. Cumming , L. Cunningham , R. M. Cutler , J. Dalrymple , K. Danzmann , G. Davies , D. DeBra , J. Degallaix , M. Degree , V. Dergachev , S. Desai , R. DeSalvo , S. Dhurandhar , M. Díaz , J. Dickson , A. Dietz , F. Donovan , K. L. Dooley , E. E. Doomes , R. W. P. Drever , I. Duke , J. -C. Dumas , R. J. Dupuis , J. G. Dwyer , C. Echols , A. Effler , P. Ehrens , E. Espinoza , T. Etzel , T. Evans , S. Fairhurst , Y. Fan , D. Fazi , H. Fehrmann , M. M. Fejer , L. S. Finn , K. Flasch , N. Fotopoulos , A. Freise , R. Frey , T. Fricke , P. Fritschel , V. V. Frolov , M. Fyffe , J. Garofoli , I. Gholami , J. A. Giaime , S. Giampanis , K. D. Giardina , K. Goda , E. Goetz , L. Goggin , G. González , S. Gossler , R. Gouaty , A. Grant , S. Gras , C. Gray , M. Gray , R. J. S. Greenhalgh , A. M. Gretarsson , F. Grimaldi , R. Grosso , H. Grote , S. Grunewald , M. Guenther , E. K. Gustafson , R. Gustafson , B. Hage , J. M. Hallam , D. Hammer , C. Hanna , J. Hanson , J. Harms , G. Harry , E. Harstad , K. Hayama , T. Hayler , J. Heefner , I. S. Heng , M. Hennessy , A. Heptonstall , M. Hewitson , S. Hild , E. Hirose , D. Hoak , D. Hosken , J. Hough , S. H. Huttner , D. Ingram , M. Ito , A. Ivanov , B. Johnson , W. W. Johnson , D. I. Jones , ÂG. Jones , R. Jones , L. Ju , P. Kalmus , V. Kalogera , S. Kamat , J. Kanner , D. Kasprzyk , E. Katsavounidis , K. Kawabe , S. Kawamura , F. Kawazoe , W. Kells , D. G. Keppel , F. Ya. Khalili , R. Khan , E. Khazanov , C. Kim , P. King , J. S. Kissel , S. Klimenko , K. Kokeyama , V. Kondrashov , R. K. Kopparapu , D. Kozak , I. Kozhevatov , B. Krishnan , P. Kwee , P. K. Lam , M. Landry , M. M. Lang , B. Lantz , A. Lazzarini , M. Lei , N. Leindecker , V. Leonhardt , I. Leonor , K. Libbrecht , H. Lin , P. Lindquist , N. A. Lockerbie , D. Lodhia , M. Lormand , P. Lu , M. Lubinski , A. Lucianetti , H. Lück , B. Machenschalk , M. MacInnis , M. Mageswaran , K. Mailand , V. Mandic , S. Márka , Z. Márka , A. Markosyan , J. Markowitz , E. Maros , I. Martin , R. M. Martin , J. N. Marx , K. Mason , F. Matichard , L. Matone , R. Matzner , N. Mavalvala , R. McCarthy , D. E. McClelland , S. C. McGuire , M. McHugh , G. McIntyre , G. McIvor , D. McKechan , K. McKenzie , T. Meier , A. Melissinos , G. Mendell , R. A. Mercer , S. Meshkov , C. J. Messenger , D. Meyers , J. Miller , J. Minelli , S. Mitra , V. P. Mitrofanov , G. Mitselmakher , R. Mittleman , O. Miyakawa , B. Moe , S. Mohanty , G. Moreno , K. Mossavi , C. MowLowry , G. Mueller , S. Mukherjee , H. Mukhopadhyay , H. Müller-Ebhardt , J. Munch , P. Murray , E. Myers , J. Myers , T. Nash , J. Nelson , G. Newton , A. Nishizawa , K. Numata , J. O'Dell , G. Ogin , B. O'Reilly , R. O'Shaughnessy , D. J. Ottaway , R. S. Ottens , H. Overmier , B. J. Owen , Y. Pan , C. Pankow , M. A. Papa , V. Parameshwaraiah , P. Patel , M. Pedraza , S. Penn , A. Perreca , T. Petrie , I. M. Pinto , M. Pitkin , H. J. Pletsch , M. V. Plissi , F. Postiglione , M. Principe , R. Prix , V. Quetschke , F. Raab , D. S. Rabeling , H. Radkins , N. Rainer , M. Rakhmanov , M. Ramsunder , H. Rehbein , S. Reid , D. H. Reitze , R. Riesen , K. Riles , B. Rivera , N. A. Robertson , C. Robinson , E. L. Robinson , S. Roddy , A. Rodriguez , A. M. Rogan , J. Rollins , J. D. Romano , J. Romie , R. Route , S. Rowan , A. Rüdiger , L. Ruet , P. Russell , K. Ryan , S. Sakata , M. Samidi , L. Sancho de la Jordana , V. Sandberg , V. Sannibale , S. Saraf , P. Sarin , B. S. Sathyaprakash , S. Sato , P. R. Saulson , R. Savage , P. Savov , S. W. Schediwy , R. Schilling , R. Schnabel , R. Schofield , B. F. Schutz , P. Schwinberg , S. M. Scott , A. C. Searle , B. Sears , F. Seifert , D. Sellers , A. S. Sengupta , P. Shawhan , D. H. Shoemaker , A. Sibley , X. Siemens , D. Sigg , S. Sinha , A. M. Sintes , B. J. J. Slagmolen , J. Slutsky , J. R. Smith , M. R. Smith , N. D. Smith , K. Somiya , B. Sorazu , L. C. Stein , A. Stochino , R. Stone , K. A. Strain , D. M. Strom , A. Stuver , T. Z. Summerscales , K. -X. Sun , M. Sung , P. J. Sutton , H. Takahashi , D. B. Tanner , R. Taylor , R. Taylor , J. Thacker , K. A. Thorne , K. S. Thorne , A. Thüring , K. V. Tokmakov , C. Torres , C. Torrie , G. Traylor , M. Trias , W. Tyler , D. Ugolini , J. Ulmen , K. Urbanek , H. Vahlbruch , C. Van Den Broeck , M. van der Sluys , S. Vass , R. Vaulin , A. Vecchio , J. Veitch , P. Veitch , A. Villar , C. Vorvick , S. P. Vyachanin , S. J. Waldman , L. Wallace , H. Ward , R. Ward , M. Weinert , A. Weinstein , R. Weiss , S. Wen , K. Wette , J. T. Whelan , S. E. Whitcomb , B. F. Whiting , C. Wilkinson , P. A. Willems , H. R. Williams , L. Williams , B. Willke , I. Wilmut , W. Winkler , C. C. Wipf , A. G. Wiseman , G. Woan , R. Wooley , J. Worden , W. Wu , I. Yakushin , H. Yamamoto , Z. Yan , S. Yoshida , M. Zanolin , J. Zhang , L. Zhang , C. Zhao , N. Zotov , M. Zucker , J. Zweizig , G. Santostasi

Review report of giant pulses of pulsar radio emission, based on our detections of four new pulsars with giant pulses, and the comparative analysis of the previously known pulsars with giant pulses, including the Crab pulsar and millisecond…

Astrophysics · Physics 2008-11-26 A. D. Kuzmin

The nature of coherent radio emission is still challenging even after more than half a century of pulsar discovery, but it is generally a consensus that single-pulse observations are essential for probing the magnetospheric dynamics,…

High Energy Astrophysical Phenomena · Physics 2026-05-11 Shunshun Cao , Yanjun Guo , Jinchen Jiang , Kejia Lee , Weiyang Wang , Renxin Xu

The gamma ray flares of the Crab nebula detected by Fermi and AGILE satellites challenge our understanding of physics of pulsars and their nebulae. The central problem is that the peak energy of the flares exceeds the maximum energy…

High Energy Astrophysical Phenomena · Physics 2015-06-12 Yuto Teraki , Fumio Takahara

The Crab pulsar has suffered in 1975 and 1989 two glitches in which the frequency did not relaxed to the extrapolated pre-glitch value but rather spun up showing long-term changes in the frequency derivative dot Omega. This particular…

Astrophysics · Physics 2015-06-24 M. P. Allen , J. E. Horvath

During the last few years there were discovered and deeply examined several transient neutron stars (Rotating Radio Transients). It is already well accepted that these objects are rotating neutron stars. But their extraordinary features…

Astrophysics · Physics 2007-09-14 D. Lomiashvili , G. Machabeli , I. Malov

In the canonical picture of pulsars, radio emission arises from a narrow cone centered on the star's magnetic axis but many basic details remain unclear. We use high-quality polarization data taken with the Parkes radio telescope to…

High Energy Astrophysical Phenomena · Physics 2019-11-06 Simon Johnston , Michael Kramer