We propose a new way to implement (general) computing devices with unbounded memory. In particular, we show a procedure to implement automata with unbounded stack memory, push-down automata, using circular DNA molecules and a class IIs restriction enzyme. The proposed ideas are inspired by the results from [1]. The same ideas are extended to show a way to implement push-down automata with two stacks (i.e, universal computing devices) using two circular molecules glued with a DX molecule and a class IIs restriction enzyme. In this case each computational molecule also contains a DX portion. These devices can potentially be incorporated in an array of TX molecules. © Springer-Verlag Berlin Heidelberg 2005.

Biomolecular implementation of computing devices with unbounded memory / Cavaliere, M.; Jonoska, N.; Yogev, S.; Piran, R.; Keinan, E.; Seeman, N. C.. - 3384:(2005), pp. 35-49. ( 10th International Workshop on DNA Computing, DNA 10 Milan, ita 2004) [10.1007/11493785_4].

Biomolecular implementation of computing devices with unbounded memory

Cavaliere M.;
2005

Abstract

We propose a new way to implement (general) computing devices with unbounded memory. In particular, we show a procedure to implement automata with unbounded stack memory, push-down automata, using circular DNA molecules and a class IIs restriction enzyme. The proposed ideas are inspired by the results from [1]. The same ideas are extended to show a way to implement push-down automata with two stacks (i.e, universal computing devices) using two circular molecules glued with a DX molecule and a class IIs restriction enzyme. In this case each computational molecule also contains a DX portion. These devices can potentially be incorporated in an array of TX molecules. © Springer-Verlag Berlin Heidelberg 2005.
2005
Inglese
10th International Workshop on DNA Computing, DNA 10
Milan, ita
2004
Lecture Notes in Computer Science
3384
35
49
978-3-540-26174-2
978-3-540-31844-6
Springer Verlag
HEIDELBERGER PLATZ 3, D-14197 BERLIN, GERMANY
Cavaliere, M.; Jonoska, N.; Yogev, S.; Piran, R.; Keinan, E.; Seeman, N. C.
Atti di CONVEGNO::Relazione in Atti di Convegno
273
6
Biomolecular implementation of computing devices with unbounded memory / Cavaliere, M.; Jonoska, N.; Yogev, S.; Piran, R.; Keinan, E.; Seeman, N. C.. - 3384:(2005), pp. 35-49. ( 10th International Workshop on DNA Computing, DNA 10 Milan, ita 2004) [10.1007/11493785_4].
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info:eu-repo/semantics/conferenceObject
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1319964
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