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Published online by Cambridge University Press:  05 June 2014

Giuseppe Bertin
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Università degli Studi di Milano
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Dynamics of Galaxies , pp. 451 - 454
Publisher: Cambridge University Press
Print publication year: 2014

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References

Aarseth, S. J. 2003. Gravitational N-Body Simulations. Cambridge University Press, Cambridge, UK.CrossRefGoogle Scholar
Abramowitz, M., Stegun, I. A. 1965. Handbook of Mathematical Functions. Dover, New York.Google Scholar
Alfvén, H. 1950. Cosmic Electrodynamics. Oxford University Press, Oxford, UK.Google Scholar
Alfvén, H., Fälthammar, C.-G. 1963. Cosmic Electrodynamics. Oxford University Press, Oxford, UK.Google Scholar
Armitage, P. J. 2010. Astrophysics of Planet Formation. Cambridge University Press, Cambridge, UK.Google Scholar
Arnol'd, V. I. 1976. Les Méthodes Mathématiques de la Mécanique Classique. Mir, Moscow.Google Scholar
Arnol'd, V. I. 1989. Mathematical Methods of Classical Mechanics. Springer-Verlag, Berlin.CrossRefGoogle Scholar
Ashman, K., Zepf, S. E. 1998. Globular Cluster Systems. Cambridge University Press, Cambridge, UK.CrossRefGoogle Scholar
Batchelor, G. K. 1967. FluidDynamics. Cambridge University Press, Cambridge, UK.Google Scholar
Bender, C. M., Orszag, S. A. 1978. Advanced Mathematical Methods for Scientists and Engineers. McGraw-Hill, New York.Google Scholar
Bertin, G., Lin, C. C. 1996. Spiral Structure in Galaxies: A Density Wave Theory. MIT Press, Cambridge, MA.Google Scholar
Bertin, G., Farina, D., Pozzoli, R., eds. 2004. Plasmas in the Laboratory and in the Universe: New Insights and New Challenges. AIP Conference Proceedings, Vol. 703, Melville, NY.
Bertin, G., Pozzoli, R., et al. eds. 2007. Collective Phenomena in Macroscopic Systems. World Scientific, Singapore.CrossRef
Bertin, G., De Luca, F., et al. eds. 2010. Plasmas in the Laboratory and in the Universe: Interactions, Patterns, and Turbulence. AIP Conference Proceedings, Vol. 1242, Melville, NY.
Binney, J., Merrifield, M. 1998. Galactic Astronomy. Princeton University Press, Princeton, NJ.Google Scholar
Binney, J., Tremaine, S. 1987. Galactic Dynamics. Princeton University Press, Princeton, NJ.Google Scholar
Binney, J., Tremaine, S. 2008. Galactic Dynamics, 2nd ed. Princeton University Press, Princeton, NJ.Google Scholar
Birdsall, C. K., Langdon, A. B. 1985. Plasma Physics via Computer Simulation. McGraw-Hill, New York.Google Scholar
Biskamp, D. 1993. Nonlinear Magnetohy-drodynamics. Cambridge University Press, Cambridge, UK.CrossRefGoogle Scholar
Blaauw, A., Schmidt, M., eds. 1965. Galactic Structure. University of Chicago Press, Chicago.
Block, D. L., Greenberg, J. M. eds. 1996. New Extragalactic Perspectives in the New South Africa. Kluwer, Dordrecht, The Netherlands.CrossRef
Boccaletti, D., Pucacco, G. 1996. Theory of Orbits, Vol. 1: Integrable Systems and Nonperturbative Methods. Springer-Verlag, Berlin.CrossRefGoogle Scholar
Boccaletti, D., Pucacco, G. 1999. Theory ofOrbits, Vol. 2: Perturbative and Geometrical Methods. Springer-Verlag, Berlin.CrossRefGoogle Scholar
Bok, B.J., Bok, P. F. 1974. The Milky Way, 4th ed. Harvard University Press, Cambridge, MA.Google Scholar
Budden, K. G. 1985. The Propagation of Radio Waves. Cambridge University Press, Cambridge, UK.CrossRefGoogle Scholar
Buta, R. I., Corwin, H. G., Oderwahn, S. C. 2007. The de Vaucouleurs Atlas of Galaxies. Cambridge University Press, Cambridge, UK.Google Scholar
Cairns, R. A. 1991. Radiofrequency Heating of Plasmas. Hilger, Bristol, UK.Google Scholar
Casertano, S., Sackett, P., Briggs, F., eds. 1991. Warped Disks and Inclined Rings around Galaxies. Cambridge University Press, Cambridge, UK.
Chandrasekhar, S. 1939. An Introduction to the Theory of Stellar Structure. University of Chicago, Chicago (reprinted in 1958 by Dover, New York).Google Scholar
Chandrasekhar, S. 1942. Principles of Stellar Dynamics. University of Chicago Press, Chicago (reprinted in 1960 by Dover, New York).Google Scholar
Chandrasekhar, S. 1961. Hydrodynamic and Hydromagnetic Stability. Oxford University Press, Oxford, UK (reprinted in 1981 by Dover, New York).Google Scholar
Chandrasekhar, S. 1969. Ellipsoidal Figures of Equilibrium. Yale University Press, New Haven, CT.Google Scholar
Chandrasekhar, S. 1983. TheMathematical Theory ofBlack Holes. Clarendon Press, Oxford, UK.Google Scholar
Chapman, S., Cowling, T. G. 1952. The Mathematical Theory of Non-Uniform Gases. Cambridge University Press, Cambridge, UK.Google Scholar
Chen, F. F. 1984. Introduction to Plasma Physics and Controlled Fusion, Vol. 1: Plasma Physics, 2nd ed. Plenum, New York.CrossRefGoogle Scholar
Ciotti, L.An Introduction to Stellar Dynamics. Cambridge University Press, Cambridge, UK (in preparation).
Combes, F., Casoli, F., eds. 1991. Dynamics of Galaxies and Their Molecular Cloud Distributions. Kluwer, Dordrecht, The Netherlands.
Contopoulos, G. 2002. Order and Chaos in Dynamical Astronomy. Springer-Verlag, Berlin.CrossRefGoogle Scholar
Cox, J. P. 1980. Theory ofStellarPulsation. Princeton University Press, Princeton, NJ.Google Scholar
De Bruijn, N. G. 1970. Asymptotic Methods in Analysis. North-Holland, Amsterdam.Google Scholar
de Vaucouleurs, G., de Vaucouleurs, A., et al. 1991. Third Reference Catalogue of Bright Galaxies. Springer-Verlag, New York.Google Scholar
Dyson, F. J. l91l. Neutron Stars andPulsars. Fermi Lectures 1970. Accademia Nazionale dei Lincei, Rome.Google Scholar
Eddington, A. S. 1926. Internal Constitution of Stars. Cambridge University Press, Cambridge, UK.Google Scholar
Erdélyi, A. 1956. Asymptotic Expansions. Dover, New York.Google Scholar
Fabbiano, G., Gallagher, J. s., Renzini, A., eds. 1990. Windows on Galaxies. Kluwer, Dordrecht, The Netherlands.CrossRef
Fabian, A. C., ed. 1987. Cooling Flows in Clusters and Galaxies. Kluwer, Dordrecht, The Netherlands.
Feynman, R. P., Leighton, R. B., Sands, M. 1963. The Feynman Lectures on Physics. Addison-Wesley, Reading, MA.Google Scholar
Frank, J., King, A., Raine, D. 2002. Accretion Power in Astrophysics, 3rd ed. Cambridge University Press, Cambridge, UK.CrossRefGoogle Scholar
Fridman, A. M., Polyachenko, V. L. 1984. Physics of Gravitating Systems. Springer-Verlag, Berlin.Google Scholar
Fried, B. F., Conte, S. 1961. The Plasma Dispersion Function. Academic, New York.Google Scholar
Goldstein, H. 1950. Classical Mechanics. Addison-Wesley, Reading, MA.Google Scholar
Hartmann, L. 2009. Accretion Processes in Star Formation, 2nd ed. Cambridge University Press, Cambridge, UK.Google Scholar
Hartmann, D., Burton, W. B. 1997. Atlas of Galactic Neutral Hydrogen. Cambridge University Press, Cambridge, UK.Google Scholar
Harwit, M. 2006. Astrophysical Concepts, 4th ed. Springer, New York.Google Scholar
Heading, J. 1962. An Introduction to Phase-Integral Methods. Wiley, New York.Google Scholar
Heggie, D., Hut, P. 2003. The Gravitational Million-Body Problem: A Multidisciplinary Approach to Star Cluster Dynamics. Cambridge University Press, Cambridge, UK.CrossRefGoogle Scholar
Hockney, R. W., Eastwood, J. W. 1981. Computer Simulations Using Particles. McGraw-Hill, New York.Google Scholar
Hodge, P. 1992. The Andromeda Galaxy. Kluwer, Dordrecht, The Netherlands.CrossRefGoogle Scholar
Huba, J. D. 2002. NRL Plasma Formulary. Naval Research Laboratory, Washington, DC.Google Scholar
Hubble, E. 1936. The Realm of the Nebulae. Yale University Press, New Haven, CT.Google Scholar
Ichimaru, S. 1973. Basic Principles of Plasma Physics: A Statistical Approach. Benjamin, Reading, MA.Google Scholar
Jackson, J. D. 1962. Classical Electrodynamics. Wiley, New York.Google Scholar
Jeans, J. 1929. Astronomy and Cosmogony. Cambridge University Press, Cambridge, UK (reprinted in 1961 by Dover, New York).Google Scholar
Kelvin, Lord 1910. Mathematical and Physical Papers. Cambridge University Press, Cambridge, UK.Google Scholar
Kim, D.-W., Pellegrini, S., eds. 2012. HotInterstellar Matter in Elliptical Galaxies. Astrophysics and Space Science Library, Vol. 378, Springer Science and Business Media, Heidelberg.CrossRef
Kitchin, C. R. 1984. Astrophysical Techniques. Adam Hilger, Bristol, UK (5th ed. published in 2009 by CRC Press, Taylor & Francis Group, Boca Raton, FL).Google Scholar
Klimontovich, Y. L. 1967. The Statistical Theory of Nonequilibrium Processes in a Plasma. MIT Press, Cambridge, MA.Google Scholar
Kolb, E. w., Turner, M. s. 1990. The Early Universe. Addison-Wesley, Redwood City, CA.Google Scholar
Krall, N. A., Trivelpiece, A. w. 1973. Principles of Plasma Physics. McGraw-Hill, New York.Google Scholar
Landau, L., Lifchitz, E. 1967. Physique Statistique. Mir, Moscow.Google Scholar
Lecar, M., ed. 1972. Gravitational N-Body Problem. IAU Colloquium, Vol. 10. Reidel, Dordrecht, The Netherlands.CrossRef
Lin, C. C., Siegel, L. A. 1988. Mathematics Applied to Deterministic Problems in the Natural Sciences. Society for Industrial and Applied Mathematics, Philadelphia, PA.CrossRefGoogle Scholar
Linde, A. D. 1990. Particle Physics and Inflationary Cosmology. Harwood, New York.CrossRefGoogle Scholar
MacMillan, W.D. 1958. Theoretical Mechanics: The Theory ofthe Potential. Academic, New York.Google Scholar
Martinet, M., Mayor, M., eds. 1973. Dynamical Structure and Evolution of Stellar Systems. Geneva Observatory, Sauverny, Switzerland.
Maslov, V. P., Fedoriuk, M. V. 1981. Semi-Classical Approximation in Quantum Mechanics. Reidel, Dordrecht, The Netherlands.CrossRefGoogle Scholar
Matteucci, F. 2001. The Chemical Evolution of the Galaxy. Kluwer, Dordrecht, The Netherlands.Google Scholar
Mayer, J. E., Mayer, M. G. 1940. Statistical Mechanics ofFluids. Wiley, New York.Google Scholar
Messiah, A. 1962. Quantum Mechanics. Wiley, New York.Google Scholar
Mihalas, D., Binney, J. J. 1981. Galactic Astronomy. Freeman, San Francisco.Google Scholar
Nayfeh, A. H. 1973. Perturbation Methods. Wiley, New York.Google Scholar
Nezlin, M. V., Snezhkin, E. N. 1993. Rossby Vortices, Spiral Structure, Solitons. Springer-Verlag, Heidelberg.CrossRefGoogle Scholar
Noether, E. 1983. Collected Papers, ed. N., Jacobson. Springer-Verlag, Berlin.Google Scholar
Northrop, T. G. 1963. The Adiabatic Motion of Charged Particles. Wiley Interscience, New York.Google Scholar
Ogorodnikov, K. F. 1965. Dynamics of Stellar Systems. Pergamon, New York.Google Scholar
Pagel, B. E. J. 1998. Nucleosynthesis and Chemical Evolution of Galaxies. Cambridge University Press, Cambridge, UK.Google Scholar
Pakner, P. L. 1994. Stability of Collisionless Stellar Systems. Kluwer, Dordrecht, The Netherlands.Google Scholar
Peebles, P. J. E. 1980. The Large-Scale Structure of the Universe. Princeton University Press, Princeton, NJ.Google Scholar
Peebles, P. J. E. 1993. Principles of Physical Cosmology. Princeton University Press, Princeton, NJ.Google Scholar
Peterson, B. M. 1997. An Introduction to Active Galactic Nuclei. Cambridge University Press, Cambridge, UK.CrossRefGoogle Scholar
Poincaré, H. 1908. Science et Méthode. Trans, as Science and Method, published in 1914 by Courier Dover Publications, New York.Google Scholar
Poston, T., Stewart, I. 1978. Catastrophe Theory and Its Applications. Pitman, London.Google Scholar
Potter, D. 1973. An Introduction to Computational Physics. Wiley, London.Google Scholar
Rybicki, G. B., Lightman, A. p. 1979. Radiative Processes in Astrophysics. Wiley, New York.Google Scholar
Sandage, A. 1961. The Hubble Atlas of Galaxies. Publication 618, Carnegie Institution of Washington, Washington, DC.Google Scholar
Sandage, A., Bedke, J. 1988. Atlas of Galaxies UsefulforMeasuring the Cosmological Distance Scale. NASA SP-496, Washington, DC.Google Scholar
Sandage, A., Bedke, J. 1994. The Carnegie Atlas of Galaxies. Publication 638, Carnegie Institution of Washington, Washington, DC.Google Scholar
Sandage, A., Sandage, M., Kristian, J., eds. 1975. Galaxies and the Universe. University of Chicago Press, Chicago.
Sandage, A., Tammann, G. A. 1987. A Revised Shapley-Ames Catalog of Bright Galaxies, 2nd ed. Publication 635, Carnegie Institution of Washington, Washington, DC.Google Scholar
Sanders, R. H. 2010. The Dark Matter Problem: A Historical Perspective. Cambridge University Press, Cambridge, UK.CrossRefGoogle Scholar
Sarazin, C. L. 1988. X-Ray Emissionsfrom Clusters of Galaxies. Cambridge University Press, Cambridge, UK.Google Scholar
Saslaw, W. C. 1985. Gravitational Physics of Stellar and Galactic Systems. Cambridge University Press, Cambridge, UK.CrossRefGoogle Scholar
Schmidt, G. 1979. Physics of High Temperature Plasmas, 2nd ed. Academic, New York.Google Scholar
Schneider, P., Ehlers, J., Falco, E. E. 1992. Gravitational Lenses. Springer-Verlag, Heidelberg.Google Scholar
Sciama, D. W. 1993. Modern Cosmology and the Dark Matter Problem. Cambridge University Press, Cambridge, UK.Google Scholar
Sérsic, J.-L. 1968. Atlas de Galaxias Australes. Observatorio Astronomico de Córdoba, Córdoba, Argentina.Google Scholar
Sommerfeld, A. 1949. Partial Differential Equations in Physics. Academic, New York.Google Scholar
Spitzer, L. Jr., 1962. Physics of Fully Ionized Gases. Wiley, New York.Google Scholar
Spitzer, L. Jr., 1968. Diffuse Matter in Space. Wiley, New York.Google Scholar
Spitzer, L. Jr., 1978. Physical Processes in the InterstellarMedium. Wiley, New York.Google Scholar
Spitzer, L. Jr., 1987. Dynamical Evolution of Globular Clusters. Princeton University Press, Princeton, NJ.Google Scholar
Stiavelli, M. 2009. From First Light to Reionization: The End of the DarkAges. Wiley, New York.CrossRefGoogle Scholar
Stix, T. H. 1962. The Theory of Plasma Waves. McGraw-Hill, New York.Google Scholar
Stoker, J. J. 1957. Water Waves. Wiley Interscience, New York.Google Scholar
Tajima, T. 1989. Computational Plasma Physics, with Applications to Fusion and Astrophysics. Addison-Wesley, Reading, MA.Google Scholar
Tassoul, J.-L. 1978. Theory of Rotating Stars. Princeton University Press, Princeton, NJ.Google Scholar
Thirring, W. 1980. Quantum Mechanics of Large Systems, A Course in Mathematical Physics, Vol. IV. Springer-Verlag, New York.Google Scholar
Tricomi, F. G. 1985. Integral Equations. Dover, New York.Google Scholar
Van Dyke, M. 1975. Perturbation Methods in Fluid Mechanics. Parabolic, Stanford, CA.Google Scholar
Vilenkin, N.Ya. 1968. Special Functions and the Theory ofGroup Representations. AMS Translations of Mathematical Monographs Series, Vol. 22. American Mathematical Society, Providence, RI.CrossRefGoogle Scholar
Whitham, G. B. 1974. Linear and Nonlinear Waves. Wiley, New York.Google Scholar
Whittet, D. C. B. 1992. Dust in the Galactic Environment. Institute of Physics Publishing, Bristol, UK.CrossRefGoogle Scholar
Zel'dovich, Ya. B., Novikov, I. D. 1971. Relativistic Astrophysics, Vol. 1: Stars and Relativity. University of Chicago Press, Chicago.Google Scholar
Zwicky, F. 1957. Morphological Astronomy. Springer-Verlag, Berlin.CrossRefGoogle Scholar

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  • Bibliography
  • Giuseppe Bertin, Università degli Studi di Milano
  • Book: Dynamics of Galaxies
  • Online publication: 05 June 2014
  • Chapter DOI: https://doi.org/10.1017/CBO9780511731990.030
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  • Bibliography
  • Giuseppe Bertin, Università degli Studi di Milano
  • Book: Dynamics of Galaxies
  • Online publication: 05 June 2014
  • Chapter DOI: https://doi.org/10.1017/CBO9780511731990.030
Available formats
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  • Bibliography
  • Giuseppe Bertin, Università degli Studi di Milano
  • Book: Dynamics of Galaxies
  • Online publication: 05 June 2014
  • Chapter DOI: https://doi.org/10.1017/CBO9780511731990.030
Available formats
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