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Let f be a transcendental entire function of order less than 1/2. Denote the maximum and minimum modulus of f by M(r, f) = max{|f(z)|: |z| = r} and m(r, f) = min{|f(z)|: |z| = r}. We obtain a minimum modulus condition satisfied by many f of order zero that implies all Fatou components are bounded. A special case of our result is that if
$ \log \log M(r,f) = O(\log r/(\log \log r)^K ) $ \log \log M(r,f) = O(\log r/(\log \log r)^K )   相似文献   

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We consider bounded symmetric domains in complex Banach spaces. It is known that each of these domains can be realized as open unit ballD of a uniquely determined complex Banach spaceE and that every biholomorphic automorphismg ofD extends holomorphically to the closure ofD inE. We study subsetsS of (and in particular of the boundary ϖD) such that every automorphismg is already uniquely determined by its values onS. We also consider subsetsS with the analogue topological property: For every sequence (g n ) of automorphisms converging uniformly onS tog the convergence is already uniform onD. Supported by Acción Integrada Hispano-Alemana Supported by Xunta de Galicia, project Xuga 20702 B 90  相似文献   

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All stationary values of the fifth coefficient of bounded univalent functions with real coefficients are found, including maximum and minimum values.  相似文献   

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We describe conditions under which a multiply connected wanderingdomain of a transcendental meromorphic function with a finitenumber of poles must be a Baker wandering domain, and we discussthe possible eventual connectivity of Fatou components of transcendentalmeromorphic functions. We also show that if f is meromorphic,U is a bounded component of F(f) and V is the component of F(f)such that f(U)V, then f maps each component of U onto a componentof the boundary of V in . We give examples which show that our results are sharp; for example,we prove that a multiply connected wandering domain can mapto a simply connected wandering domain, and vice versa.  相似文献   

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Let be a bounded symmetric domain in a complex vector space with a real form and be the real bounded symmetric domain in the real vector space . We construct the Berezin kernel and consider the Berezin transform on the -space on . The corresponding representation of is then unitarily equivalent to the restriction to of a scalar holomorphic discrete series of holomorphic functions on and is also called the canonical representation. We find the spectral symbol of the Berezin transform under the irreducible decomposition of the -space.

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Suppose thatf(z) is an entire transcendental function with real Taylor coefficients, M(r)= max¦f(z)¦on¦z¦=r, and {n} is the sequence of sign changes of the coefficients. We will show that if (1/n)<, then .Translated from Matematicheskie Zametki, Vol. 18, No. 3, pp. 395–402, September, 1975.The author thanks A. A. Gol'dberg for his useful comments.  相似文献   

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Let ? and f be functions in the Laguerre-Pólya class. Write ?(z)=eαz2?1(z) and f(z)=eβz2f1(z), where ?1 and f1 have genus 0 or 1 and α,β?0. If αβ<1/4 and ? has infinitely many zeros, then ?(D)f(z) has only simple real zeros, where D denotes differentiation.  相似文献   

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