An analytic formula for the Jack polynomials.
Mangazeev, Vladimir V. (2007)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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Mangazeev, Vladimir V. (2007)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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Grünbaum, F.Alberto, Rahman, Mizan (2010)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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Hallnäs, Martin (2007)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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Hoare, Michael R., Rahman, Mizan (2008)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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Briand, Emmanuel (2004)
Beiträge zur Algebra und Geometrie
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Vernescu, Andrei (2005)
General Mathematics
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Ismail, Mourad E.H., Prodinger, Helmut, Stanton, Dennis (2000)
Séminaire Lotharingien de Combinatoire [electronic only]
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Alan Common (1996)
Banach Center Publications
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The classical orthogonal polynomials defined on intervals of the real line are related to many important branches of analysis and applied mathematics. Here a method is described to generalise this concept to polynomials defined on higher dimensional spaces using Bi-Axial Monogenic functions. The particular examples considered are Gegenbauer polynomials defined on the interval [-1,1] and the Gegenbauer functions of the second kind which are weighted Cauchy integral transforms over this...
Musiker, Gregg (2006)
Séminaire Lotharingien de Combinatoire [electronic only]
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Bernhard Beckermann, Jacek Gilewicz, Elie Leopold (1995)
Applicationes Mathematicae
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We show that polynomials defined by recurrence relations with periodic coefficients may be represented with the help of Chebyshev polynomials of the second kind.
Tsujimoto, Satoshi, Zhedanov, Alexei (2009)
SIGMA. Symmetry, Integrability and Geometry: Methods and Applications [electronic only]
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Aval, Jean-Christophe (2005)
Séminaire Lotharingien de Combinatoire [electronic only]
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