Quantum computation and quantum information
Quantum computation and quantum information
Computers and Intractability: A Guide to the Theory of NP-Completeness
Computers and Intractability: A Guide to the Theory of NP-Completeness
Membrane Computing: An Introduction
Membrane Computing: An Introduction
Theoretical Computer Science - Natural computing
GP Systems with forbidding context
Fundamenta Informaticae - Membrane computing
WMC-CdeA '02 Revised Papers from the International Workshop on Membrane Computing
Computing with Membranes
From regulated rewriting to computing with membranes: collapsing hierarchies
Theoretical Computer Science
The conformon-P system: a molecular and cell biology-inspired computability model
Theoretical Computer Science
Computation: finite and infinite machines
Computation: finite and infinite machines
Three "quantum" algorithms to solve 3-SAT
Theoretical Computer Science
Reversible P Systems to Simulate Fredkin Circuits
Fundamenta Informaticae - SPECIAL ISSUE MCU2004
Quantum sequential p systems with unit rules and energy assigned to membranes
WMC'05 Proceedings of the 6th international conference on Membrane Computing
Sequential p systems with unit rules and energy assigned to membranes
MCU'04 Proceedings of the 4th international conference on Machines, Computations, and Universality
Universal families of reversible p systems
MCU'04 Proceedings of the 4th international conference on Machines, Computations, and Universality
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Q-UREM P systems constitute an attempt to introduce and exploit in Membrane Computing notions and techniques deriving from quantum mechanics. As we will see, the approach we have adopted is different from what is usually done in Quantum Computing; in fact, we have been inspired by the functioning of creation and annihilation operators, that are sometimes used in quantum mechanics to exchange quanta of energy among physical systems. In this paper we will provide the background which has led to the current definition of Q-UREM P systems, and we will recall some results concerning their computational power.