J. J. Hester, The Crab Nebula: An Astrophysical Chimera, Annu. Rev. Astron. Astrophys, vol.46, pp.127-155, 2008.

R. Bühler and R. Blandford, The surprising Crab pulsar and its nebula: a review, Rep. Progr. Phys, vol.77, p.66901, 2014.

T. C. Weekes, Observation of TeV gamma rays from the Crab nebula using the atmospheric Cerenkov imaging technique, Astrophys. J, vol.342, pp.379-395, 1989.

F. A. Aharonian, Optimizing the angular resolution of the HEGRA telescope system to study the emission region of VHE gamma rays in the Crab Nebula, Astron. Astrophys, vol.361, pp.1073-1078, 2000.

F. A. Aharonian, Observations of the Crab nebula with HESS, Astron. Astrophys, vol.457, pp.899-915, 2006.
URL : https://hal.archives-ouvertes.fr/in2p3-00107167

J. Albert, VHE ?-Ray Observation of the Crab Nebula and its Pulsar with the MAGIC Telescope, Astrophys. J, vol.674, pp.1037-1055, 2008.

K. Meagher, Six years of VERITAS observations of the Crab Nebula. ICRC2015, Proc. Sci, vol.236, p.792, 2016.

A. U. Abeysekara, Observation of the Crab Nebula with the HAWC Gamma-Ray Observatory, Astrophys. J, vol.843, p.39, 2017.

A. A. Abdo, Fermi Large Area Telescope Observations of the Crab Pulsar And Nebula, Astrophys. J, vol.708, pp.1254-1267, 2010.
URL : https://hal.archives-ouvertes.fr/in2p3-00453756

, observations of the Crab during its March 2013 GeV gamma-ray flare, Astron. Astrophys, vol.562, p.4, 2014.

J. Aleksi?, Measurement of the Crab Nebula spectrum over three decades in energy with the MAGIC telescopes, J. High Energy Astrophys, vol.5, pp.30-38, 2015.

S. Archambault, Gamma-ray observations under bright moonlight with VERITAS, Astropart. Phys, vol.91, pp.34-43, 2017.

M. C. Weisskopf, Discovery of Spatial and Spectral Structure in the X-Ray Emission from the Crab Nebula, Astrophys. J, vol.536, pp.81-84, 2000.

S. V. Bogovalov and D. V. Khangoulian, On the origin of the torus and jet-like structures in the centre of the Crab Nebula, Mon. Not. R. Astron. Soc, vol.336, pp.53-55, 2002.

C. F. Kennel and F. V. Coroniti, Confinement of the Crab pulsar's wind by its supernova remnant, Astrophys. J, vol.283, pp.694-709, 1984.

C. F. Kennel and F. V. Coroniti, Magnetohydrodynamic model of Crab nebula radiation, Astrophys. J, vol.283, pp.710-730, 1984.

A. M. Atoyan and F. A. Aharonian, On the mechanisms of gamma radiation in the Crab Nebula, Month. Not. R. Astron. Soc, vol.278, pp.525-541, 1996.

K. K. Madsen, Broadband X-ray Imaging and Spectroscopy of the Crab Nebula and Pulsar with NuSTAR, Astrophys. J, vol.801, p.66, 2015.

M. Ackermann, The Search for Spatial Extension in High-latitude Sources Detected by the Fermi Large Area Telescope, Astrophys. J, vol.237, p.32, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01815199

M. C. Weisskopf, R. F. Elsner, J. J. Kolodziejczak, S. L. O'dell, and A. F. Tennant, Unraveling the Geometry of the Crab Nebula's "Inner Ring, Astrophys. J, vol.746, p.41, 2012.

M. Meyer, D. Horns, and H. Zechlin, The Crab Nebula as a standard candle in very high-energy astrophysics, Astron. Astrophys, vol.523, p.2, 2010.

L. Del-zanna, E. Amato, and N. Bucciantini, Axially symmetric relativistic MHD simulations of Pulsar Wind Nebulae in Supernova Remnants. On the origin of torus and jet-like features, Astron. Astrophys, vol.421, pp.1063-1073, 2004.

S. S. Komissarov and Y. E. Lyubarsky, Synchrotron nebulae created by anisotropic magnetized pulsar winds, Mon. Not. R. Astron. Soc, vol.349, pp.779-792, 2004.

N. Bucciantini, T. A. Thompson, J. Arons, E. Quataert, and L. Del-zanna, Relativistic magnetohydrodynamics winds from rotating neutron stars, Mon. Not. R. Astron. Soc, vol.368, pp.1717-1734, 2006.

L. Del-zanna, D. Volpi, E. Amato, and N. Bucciantini, Simulated synchrotron emission from pulsar wind nebulae, Astron. Astrophys, vol.453, pp.621-633, 2006.

D. Volpi, L. Del-zanna, E. Amato, and N. Bucciantini, Non-thermal emission from relativistic MHD simulations of pulsar wind nebulae: from synchrotron to inverse Compton, Astron. Astrophys, vol.485, pp.337-349, 2008.

O. Porth, S. S. Komissarov, and R. Keppens, Solution to the sigma problem of pulsar wind nebulae, Mon. Not. R. Astron. Soc, vol.431, pp.48-52, 2013.

G. Dubner, Morphological Properties of the Crab Nebula: A Detailed Multiwavelength Study Based on New VLA, HST, Chandra, and XMM-Newton Images, Astrophys. J, vol.840, p.82, 2017.

J. F. Macías-pérez, F. Mayet, J. Aumont, and F. Désert, Global Spectral Energy Distribution of the Crab Nebula in the Prospect of the Planck Satellite Polarization Calibration, Astrophys. J, vol.711, pp.417-423, 2010.

P. G. Mezger, R. J. Tuffs, R. Chini, E. Kreysa, and H. Gemuend, Maps of Cassiopeia A and the Crab Nebula at lambda 1.2 MM, Astron. Astrophys, vol.167, pp.145-150, 1986.

R. Bandiera, R. Neri, and R. Cesaroni, The Crab Nebula at 1.3 mm. Evidence for a new synchrotron component, Astron. Astrophys, vol.386, pp.1044-1054, 2002.

M. P. Veron-cetty and L. Woltjer, Spectrophotometry of the continuum in the Crab Nebula, Astron. Astrophys, vol.270, pp.370-378, 1993.

M. De-naurois and L. Rolland, A high performance likelihood reconstruction of ?-rays for imaging atmospheric Cherenkov telescopes, Astropart. Phys, vol.32, pp.231-252, 2009.
URL : https://hal.archives-ouvertes.fr/in2p3-00433882

T. Li and Y. Ma, Analysis methods for results in gamma-ray astronomy, Astrophys. J, vol.272, pp.317-324, 1983.

D. Berge, S. Funk, and J. Hinton, Background modelling in very-high-energy ?-ray astronomy, Astron. Astrophys, vol.466, pp.1219-1229, 2007.

M. Holler, J. Chevalier, J. Lenain, M. De-naurois, and D. Sanchez, Run-Wise Simulations for Imaging Atmospheric Cherenkov Telescope Arrays. ICRC2017, Proc. Sci, vol.301, p.755, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01903278

P. Freeman, S. Doe, and A. Siemiginowska, Sherpa: a mission-independent data analysis application, Proc. SPIE, vol.4477, pp.76-87, 2001.

R. D. Parsons and J. A. Hinton, A Monte Carlo template based analysis for air-Cherenkov arrays, Astropart. Phys, vol.56, pp.26-34, 2014.

M. J. Rees and J. E. Gunn, The origin of the magnetic field and relativistic particles in the Crab Nebula, Mon. Not. R. Astron. Soc, vol.167, pp.1-12, 1974.

C. F. Kennel and F. V. Coroniti, Magnetohydrodynamic model of Crab nebula radiation, Astrophys. J, vol.283, pp.710-730, 1984.

A. M. Atoyan and F. A. Aharonian, On the mechanisms of gamma radiation in the Crab Nebula, Month. Not. R. Astron. Soc, vol.278, pp.525-541, 1996.

S. V. Bogovalov and D. V. Khangoulian, On the origin of the torus and jet-like structures in the centre of the Crab Nebula, Mon. Not. R. Astron. Soc, vol.336, pp.53-55, 2002.

Y. E. Lyubarsky, On the structure of the inner Crab Nebula, Mon. Not. R. Astron. Soc, vol.329, pp.34-36, 2002.

M. C. Weisskopf, Discovery of Spatial and Spectral Structure in the X-Ray Emission from the Crab Nebula, Astrophys. J, vol.536, pp.81-84, 2000.

D. V. Khangoulian and S. V. Bogovalov, The Role of a Magnetic Field in the Formation of Jet-like Features in the Crab Nebula, Astron. Lett, vol.29, pp.495-501, 2003.

L. Del-zanna, E. Amato, and N. Bucciantini, Axially symmetric relativistic MHD simulations of Pulsar Wind Nebulae in Supernova Remnants. On the origin of torus and jet-like features, Astron. Astrophys, vol.421, pp.1063-1073, 2004.

S. S. Komissarov and Y. E. Lyubarsky, Synchrotron nebulae created by anisotropic magnetized pulsar winds, Mon. Not. R. Astron. Soc, vol.349, pp.779-792, 2004.

S. V. Bogovalov, V. M. Chechetkin, A. V. Koldoba, and G. V. Ustyugova, Interaction of pulsar winds with interstellar medium: numerical simulation, Mon. Not. R. Astron. Soc, vol.358, pp.705-715, 2005.

O. Porth, S. S. Komissarov, and R. Keppens, Three-dimensional magnetohydrodynamic simulations of the Crab nebula, Mon. Not. R. Astron. Soc, vol.438, pp.278-306, 2014.

R. Peierls, Model-Making in Physics, Contemp. Phys, vol.21, p.3, 1980.

F. A. Aharonian and A. M. Atoyan, Compton scattering of relativistic electrons in compact X-ray sources, Astrophys. Space Sci, vol.79, pp.321-336, 1981.