Let Z be a Banach lattice endowed with positive cone C and an order-continuous norm [...]. Let G be a semigroup of positive linear endomorphisms of Z. We seek conditions on G sufficient to ensure that the positive fixed points Co of Z under G form a lattice cone, and that their linear span Zo is a Banach lattice under an order-continuous norm [...] which agress with [...] on Co, although we do not require that Zo contain all the fixed points of Z under G, nor that Zo be a sublattice of (Z,C). We give a simple embedding construction which allows such results to be read off directly from appropriate fixed point theorems. In particular, we show that left-reversibility of G (a weaker condition than left-amenability) suffices. Results of this ki...
AbstractThis paper deals with two related subjects. In the first part, we give generation theorems, ...
AbstractIn this paper we study the relation between invariant submean and normal structure in a Bana...
A left-order on a group G is totally determined by its positive cone P, that is the elements in G th...
Abstract. Let Z be a Banach lattice endowed with positive cone C and an order-continuous norm j.j. L...
Scanned copy of final version deposited with publisher's permission.Let Z be a Banach lattice endowe...
We extend the theory of eventually nonnegative, eventually-exponentially nonnegative matrices and e...
Abstract. In this paper we introduce the notion of a cone which is a lattice ordered semigroup (l.o....
We study the properties of the adjoint of a positive semigroup T (t) of operators on a Banach lattic...
AbstractFor a given Banach space (B, ∥·∥) ordered by a normal cone B+, we introduce an equivalent no...
During the last twenty-five years, the development of the theory of Banach lattices has stimulated n...
AbstractWe characterise the infinitesimal generators of norm continuous one-parameter semigroups of ...
This paper provides various "contractivity" results for linear operators of the form I C where C are...
A description of the lattice of invariant subspaces is provided for multiplicative semigroups S of b...
A classical theory of fundamental inequalities and positive definiteness is presented in [1, 2]. In ...
by Law Chun Kong.Thesis (M.Ph.)--Chinese University of Hong Kong, 1987.Bibliography: leaves 129-133
AbstractThis paper deals with two related subjects. In the first part, we give generation theorems, ...
AbstractIn this paper we study the relation between invariant submean and normal structure in a Bana...
A left-order on a group G is totally determined by its positive cone P, that is the elements in G th...
Abstract. Let Z be a Banach lattice endowed with positive cone C and an order-continuous norm j.j. L...
Scanned copy of final version deposited with publisher's permission.Let Z be a Banach lattice endowe...
We extend the theory of eventually nonnegative, eventually-exponentially nonnegative matrices and e...
Abstract. In this paper we introduce the notion of a cone which is a lattice ordered semigroup (l.o....
We study the properties of the adjoint of a positive semigroup T (t) of operators on a Banach lattic...
AbstractFor a given Banach space (B, ∥·∥) ordered by a normal cone B+, we introduce an equivalent no...
During the last twenty-five years, the development of the theory of Banach lattices has stimulated n...
AbstractWe characterise the infinitesimal generators of norm continuous one-parameter semigroups of ...
This paper provides various "contractivity" results for linear operators of the form I C where C are...
A description of the lattice of invariant subspaces is provided for multiplicative semigroups S of b...
A classical theory of fundamental inequalities and positive definiteness is presented in [1, 2]. In ...
by Law Chun Kong.Thesis (M.Ph.)--Chinese University of Hong Kong, 1987.Bibliography: leaves 129-133
AbstractThis paper deals with two related subjects. In the first part, we give generation theorems, ...
AbstractIn this paper we study the relation between invariant submean and normal structure in a Bana...
A left-order on a group G is totally determined by its positive cone P, that is the elements in G th...