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  1.  41
    Basic logic: Reflection, symmetry, visibility.Giovanni Sambin, Giulia Battilotti & Claudia Faggian - 2000 - Journal of Symbolic Logic 65 (3):979-1013.
    We introduce a sequent calculus B for a new logic, named basic logic. The aim of basic logic is to find a structure in the space of logics. Classical, intuitionistic, quantum and non-modal linear logics, are all obtained as extensions in a uniform way and in a single framework. We isolate three properties, which characterize B positively: reflection, symmetry and visibility. A logical constant obeys to the principle of reflection if it is characterized semantically by an equation binding it with (...)
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    Basic logic: reflection, symmetry, visibility.Giovanni Sambin, Giulia Battilotti & Claudia Faggian - 2000 - Journal of Symbolic Logic 65 (3):979-1013.
    We introduce a sequent calculusBfor a new logic, named basic logic. The aim of basic logic is to find a structure in the space of logics. Classical, intuitionistic. quantum and non-modal linear logics, are all obtained as extensions in a uniform way and in a single framework. We isolate three properties, which characterizeBpositively: reflection, symmetry and visibility.A logical constant obeys to the principle of reflection if it is characterized semantically by an equation binding it with a metalinguistic link between assertions, (...)
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    Proof nets sequentialisation in multiplicative linear logic.Paolo Di Giamberardino & Claudia Faggian - 2008 - Annals of Pure and Applied Logic 155 (3):173-182.
    We provide an alternative proof of the sequentialisation theorem for proof nets of multiplicative linear logic. Namely, we show how a proof net can be transformed into a sequent calculus proof simply by properly adding to it some special edges, called sequential edges, which express the sequentiality constraints given by sequent calculus.
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    Institut de Mathématiques de Luminy.Claudia Faggian, Marie-Renée Fleury-Donnadieu & Myriam Quatrini - 2004 - In Thomas Ehrhard (ed.), Linear Logic in Computer Science. Cambridge University Press. pp. 316--236.
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