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Splicing as a binary word/language operation is inspired by the DNA recombination under the action of restriction enzymes and ligases, and was first introduced by Tom Head in 1987. Shortly thereafter, it was proven that the languages…

Formal Languages and Automata Theory · Computer Science 2012-08-31 Lila Kari , Steffen Kopecki

In this paper, we prove decidability properties and new results on the position of the family of languages generated by (circular) splicing systems within the Chomsky hierarchy. The two main results of the paper are the following. First, we…

Formal Languages and Automata Theory · Computer Science 2011-02-07 Jean Berstel , Luc Boasson , Isabelle Fagnot

Splicing systems are generative mechanisms introduced by Tom Head in 1987 to model the biological process of DNA recombination. The computational engine of a splicing system is the "splicing operation", a cut-and-paste binary string…

Formal Languages and Automata Theory · Computer Science 2019-09-06 Lila Kari , Timothy Ng

An F-system is a computational model that performs a folding operation on words of a given language, following directions coded on words of another given language. This paper considers the case in which both given languages are regular, and…

Formal Languages and Automata Theory · Computer Science 2022-05-23 Jorge C. Lucero , Sławek Staworko

In this paper, we associate the idea of derivation languages with flat splicing systems and compare the families of derivation languages (Szilard and control languages) of these systems with the family of languages in Chomsky hierarchy. We…

Formal Languages and Automata Theory · Computer Science 2019-05-22 Prithwineel Paul , Kumar Sankar Ray

We continue the research on the generative capacity of contextual grammars where contexts are adjoined around whole words (externally) or around subwords (internally) which belong to special regular selection languages. All languages…

Formal Languages and Automata Theory · Computer Science 2022-09-01 Jürgen Dassow , Bianca Truthe

The hairpin completion is an operation on formal languages which is inspired by the hairpin formation in biochemistry. Hairpin formations occur naturally within DNA-computing. It has been known that the hairpin completion of a regular…

Formal Languages and Automata Theory · Computer Science 2011-01-26 Volker Diekert , Steffen Kopecki

Improving the previously known best bound, we show that any recursively enumerable language can be generated with a non-returning parallel communicating (PC) grammar system having six context-free components. We also present a non-returning…

Formal Languages and Automata Theory · Computer Science 2009-07-30 Erzsébet Csuhaj-Varjú , György Vaszil

Techniques are developed for creating new and general language families of only semilinear languages, and for showing families only contain semilinear languages. It is shown that for language families L that are semilinear full trios, the…

Formal Languages and Automata Theory · Computer Science 2022-12-05 Oscar H. Ibarra , Ian McQuillan

Indexed languages are a classical notion in formal language theory, which has attracted attention in recent decades due to its role in higher-order model checking: They are precisely the languages accepted by order-2 pushdown automata. The…

Formal Languages and Automata Theory · Computer Science 2026-05-28 Richard Mandel , Corto Mascle , Georg Zetzsche

Commutative languages with the semilinear property (SLIP) can be naturally recognized by real-time NLOG-SPACE multi-counter machines. We show that unions and concatenations of such languages can be similarly recognized, relying on -- and…

Formal Languages and Automata Theory · Computer Science 2014-05-23 Stefano Crespi Reghizzi , Pierluigi San Pietro

P systems with active membranes were used to generate languages, in the sense of languages associated with the structure of membrane systems. Here, we analyze the power of P systems with membrane creation and dissolution restricted to…

Distributed, Parallel, and Cluster Computing · Computer Science 2011-08-18 Rama Raghavan , H. Ramesh , Marian Gheorghe , Shankara Narayanan Krishna

Geometric folding processes are ubiquitous in natural systems ranging from protein biochemistry to patterns of insect wings and leaves. In a previous study, a folding operation between strings of formal languages was introduced as a model…

Formal Languages and Automata Theory · Computer Science 2022-05-12 Jorge C. Lucero

Universal Cycles, or U-cycles, as originally defined by de Bruijn, are an efficient method to exhibit a large class of combinatorial objects in a compressed fashion, and with no repeats. de Bruijn's theorem states that U-cycles for $n$…

Combinatorics · Mathematics 2013-03-15 Michelle Champlin , Anant Godbole , Beverly Tomlinson

Right-linear (or left-linear) grammars are a well-known class of context-free grammars computing just the regular languages. They may naturally be written as expressions with (least) fixed points but with products restricted to letters as…

Logic in Computer Science · Computer Science 2024-01-25 Anupam Das , Abhishek De

This paper presents a restricted form of linear indexed grammars, called even linear indexed grammars, which yield the even linear indexed languages. These languages properly contain the context-free languages and are contained in the set…

Formal Languages and Automata Theory · Computer Science 2014-08-26 Benjamin Caulfield

The hairpin completion is an operation on formal languages that has been inspired by the hairpin formation in DNA biochemistry and by DNA computing. In this paper we investigate the hairpin completion of regular languages. It is well known…

Formal Languages and Automata Theory · Computer Science 2011-08-12 Volker Diekert , Steffen Kopecki , Victor Mitrana

Most classical results in circuit complexity theory concern circuits over the Boolean domain. Besides their simplicity and the ease of comparing different languages, the actual architecture of computers is also an important motivating…

Computational Complexity · Computer Science 2026-04-24 Piotr Kawałek , Jacek Krzaczkowski

It is shown that for every language family that is a trio containing only semilinear languages, all bounded languages in it can be accepted by one-way deterministic reversal-bounded multicounter machines (DCM). This implies that for every…

Formal Languages and Automata Theory · Computer Science 2022-12-08 Arturo Carpi , Flavio D'Alessandro , Oscar H. Ibarra , Ian McQuillan

A regular language $L$ is union-free if it can be represented by a regular expression without the union operation. A union-free language is deterministic if it can be accepted by a deterministic one-cycle-free-path finite automaton; this is…

Formal Languages and Automata Theory · Computer Science 2018-01-04 Janusz A. Brzozowski , Sylvie Davies
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