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Appendix A

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Bibliography

Abdo, A. A., Ackermann, M., Atwood, W. B., et al. 2008, Science, 322, 1218 Abdo, A. A., Ackermann, M., Ajello, M., et al. 2009a, Science, 325, 848 —. 2009b, Science, 325, 840

—. 2009c, Science, 325, 845

Abdo, A. A., Ackermann, M., Atwood, W. B., et al. 2009d, ApJ, 696, 1084 Abdo, A. A., Ackermann, M., Ajello, M., et al. 2010a, ApJ, 708, 1254 —. 2010b, ApJ, 720, 272

—. 2010c, ApJS, 187, 460 —. 2010d, ApJ, 713, 154

Abdo, A. A., et al. 2013, in preperation

Aharonian, F., Akhperjanian, A. G., Bazer-Bachi, A. R., et al. 2007, A&A, 472, 489 Arendt, P. N., Jr., & Eilek, J. A. 1998, ArXiv Astrophysics e-prints

Arons, J. 1983, ApJ, 266, 215

Atwood, W. B., et al. 2009, ApJ, 697, 1071 Baade, W. 1942, ApJ, 96, 188

Baade, W., & Zwicky, F. 1934, Proceedings of the National Academy of Science, 20, 259 Becker, W., & Truemper, J. 1997, A&A, 326, 682

Biggs, J. D. 1990, MNRAS, 245, 514 Blaskiewicz, M., et al. 1991, ApJ, 370, 643

(20)

Caraveo, P. A., Bignami, G. F., & Mereghetti, S. 1994, ApJ, 422, L87

Carroll, B. W., & Ostlie, D. A. 1996, An introduction to Modern Astrophysics (Addison-Wesley Publishing Company, Inc.)

Cheng, K. S., Ho, C., & Ruderman, M. 1986a, ApJ, 300, 500 —. 1986b, ApJ, 300, 522

Cheng, K. S., Ruderman, M., & Zhang, L. 2000, ApJ, 537, 964 Cocke, W. J., Disney, M. J., & Taylor, D. J. 1969, Nature, 221, 525 Cordes, J. M., & Lazio, T. J. W. 2002, ArXiv Astrophysics e-prints

C´ordova, F. A., Middleditch, J., Hjellming, R. M., & Mason, K. O. 1989, ApJ, 345, 451 D’Amico, N., Kaspi, V. M., Manchester, R. N., et al. 2001, ApJ, 552, L45

Daugherty, J. K., & Harding, A. K. 1982, ApJ, 252, 337 Daugherty, J. K., & Harding, A. K. 1983, ApJ, 273, 761

De Luca, A., Caraveo, P. A., Mereghetti, S., Negroni, M., & Bignami, G. F. 2005, ApJ, 623, 1051 Deutsch, A. J. 1955, Annales d’Astrophysique, 18, 1

Duncan, R. C., & Thompson, C. 1992, ApJ, 392, L9

Duyvendak, J. J. L. 1942, Publications of the Astronomical Society of the Pacific, 54, 91 Dyks, J., & Harding, A. K. 2004, ApJ, 614, 869

Dyks, J., Harding, A. K., & Rudak, B. 2004a, ApJ, 606, 1125 Dyks, J., & Rudak, B. 2003, ApJ, 598, 1201

Dyks, J., Rudak, B., & Harding, A. K. 2004b, ApJ, 607, 939 Erber, T. 1966, Rev. Mod. Phys., 38, 626

Fichtel, C. E., Hartman, R. C., Kniffen, D. A., et al. 1975, ApJ, 198, 163 Forman, W., Jones, C., Cominsky, L., et al. 1978, ApJS, 38, 357

Fritz, G., Henry, R. C., Meekins, J. F., Chubb, T. A., & Friedman, H. 1969, Science, 164, 709 Giacconi, R., Gursky, H., Paolini, F. R., & Rossi, B. B. 1962, Physical Review Letters, 9, 439 Gold, T. 1968, Nature, 218, 731

(21)

Harding, A. K., & Muslimov, A. G. 2003, in Pulsars, AXPs and SGRs Observed with BeppoSAX and Other Observatories, ed. G. Cusumano, E. Massaro, & T. Mineo, 121–126

Hewish, A., et al. 1968, Nature, 217, 709

Hillier, R. R., Jackson, W. R., Murray, A., Redfern, R. M., & Sale, R. G. 1970, ApJ, 162, L177 Hinton, J. A., Funk, S., Carrigan, S., et al. 2007, A&A, 476, L25

Hui, C. Y., & Becker, W. 2007, A&A, 470, 965

Johnson, T. J., Venter, C., & Harding, A. K. 2011, in Bulletin of the American Astronomical Society, Vol. 43, American Astronomical Society Meeting Abstracts 217, 215.04

Johnston, S., & Weisberg, J. M. 2006, MNRAS, 368, 1856

Kalapotharakos, C., Kazanas, D., Harding, A., & Contopoulos, I. 2012, ApJ, 749, 2 Kanbach, G., Bennett, K., Bignami, G. F., et al. 1980, A&A, 90, 163

Kargaltsev, O., Misanovic, Z., Pavlov, G. G., Wong, J. A., & Garmire, G. P. 2008, ApJ, 684, 542 Kennea, J., Cordova, F., Chatterjee, S., et al. 2002, ArXiv Astrophysics e-prints

Kern, B., Martin, C., Mazin, B., & Halpern, J. P. 2003, ApJ, 597, 1049 Kijak, J., & Gil, J. 1998, MNRAS, 299, 855

Koribalski, B., Johnston, S., Weisberg, J. M., & Wilson, W. 1995, ApJ, 441, 756 Kramer, M., Bell, J. F., Manchester, R. N., et al. 2003, MNRAS, 342, 1299 Luo, Q., Shibata, S., & Melrose, D. B. 2000, MNRAS, 318, 943

Lyne, A. G., & Manchester, R. N. 1988, MNRAS, 234, 477

Manchester, R. N., Hobbs, G. B., Teoh, A., & Hobbs, M. 2005, VizieR Online Data Catalog, 7245, 0

Manchester, R. N., Lyne, A. G., Taylor, J. H., et al. 1978, MNRAS, 185, 409 Manchester, R. N., Lyne, A. G., Camilo, F., et al. 2001, MNRAS, 328, 17 Marshall, H. L., & Schulz, N. S. 2002, ApJ, 574, 377

Mayall, N. U., & Oort, J. H. 1942, Publications of the Astronomical Society of the Pacific, 54, 95 McLaughlin, M. A., Lyne, A. G., Lorimer, D. R., et al. 2006, Nature, 439, 817

(22)

Morini, M. 1983, MNRAS, 202, 495

Ng, C.-Y., Roberts, M. S. E., & Romani, R. W. 2005, ApJ, 627, 904 Oppenheimer, J. R., & Volkoff, G. M. 1939, Physical Review, 55, 374 Ostriker, J. P., & Gunn, J. E. 1969, ApJ, 157, 1395

Pacini, F. 1967, Nature, 216, 567 —. 1968, Nature, 219, 145

Padmanabhan, T. 2001, Theoretical Astrophysics - Volume 2, Stars and Stellar Systems (Cambridge University Press)

Radhakrishnan, V., & Cooke, D. J. 1969, Astrophysical Letters, 3, 225

Ramanamurthy, P. V., Fichtel, C. E., Kniffen, D. A., Sreekumar, P., & Thompson, D. J. 1996, ApJ, 458, 755

Ransom, S. M., Ray, P. S., Camilo, F., et al. 2011, ApJL, 727, L16 Roberts, D. H., & Sturrock, P. A. 1972, ApJ, 173, L33

Roberts, M. S. E., Romani, R. W., & Johnston, S. 2001, ApJ, 561, L187

Roberts, M. S. E., Romani, R. W., Johnston, S., & Green, A. J. 1999, ApJ, 515, 712 Rybicki, G. B., & Lightman, A. P. 1979, Radiative processes in astrophysics

Saz Parkinson, P. M., Dormody, M., Ziegler, M., et al. 2010, ApJ, 725, 571

Shapiro, S. L., & Teukolsky, S. A. 1983, Black holes, white dwarfs and neutron stars: The physics of compact objects (Wiley Interscience)

Shevchenko, V. S., & Yakubov, S. D. 1988, Soviet Astronomy, 32, 484

Shibanov, Y. A., Zharikov, S. V., Komarova, V. N., et al. 2006, A&A, 448, 313 Shitov, Y. P. 1983, Soviet Astronomy, 27, 314

Staelin, D. H., & Reifenstein, I. E. C. 1968, Science, 162, 1481 Story, S. A., Gonthier, P. L., & Harding, A. K. 2007, ApJ, 671, 713 Sturrock, P. A. 1971, ApJ, 164, 529

Taylor, J. H., & Cordes, J. M. 1993, ApJ, 411, 674

(23)

Tolman, R. C. 1939, Physical Review, 55, 364

Torii, K., Saito, Y., Nagase, F., et al. 2001, ApJ, 551, L151

Truemper, J., Pietsch, W., Reppin, C., et al. 1978, ApJ, 219, L105 Ulmer, M. P., Matz, S. M., Wilson, R. B., et al. 1993, ApJ, 417, 738

Watters, K. P., Romani, R. W., Weltevrede, P., & Johnston, S. 2009, ApJ, 695, 1289 Weltevrede, P., & Johnston, S. 2008, MNRAS, 391, 1210

Weltevrede, P., et al. 2010, ApJ, 708, 1426

Wheeler, J. A. 1966, Annual Review of Astronomy and Astrophysics, 4, 393 Zepka, A., Cordes, J. M., Wasserman, I., & Lundgren, S. C. 1996, ApJ, 456, 305+

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