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Gravitational Topological Quantum Computation

机译:引力拓扑量子计算

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A new model in topological quantum computing, named Gravitational Topological Quantum Computing (GTQC), is introduced as an alternative respect to the Anyonic Topological Quantum Computing and DNA Computing. In the new model the quantum computer is the quantum space-time itself and the corresponding quantum algorithms refer to the computation of topological invariants for knots, links and tangles. Some applications of GTQC in quantum complexity theory and computability theory are discussed, particularly it is conjectured that the Khovanov polynomial for knots and links is more hard than #P-hard; and that the homeomorphism problem, which is non-computable, maybe can be computed after all via a hyper-computer based on GTQC.
机译:拓扑量子计算中的一种新模型,称为重力拓扑量子计算(GTQC)作为替代方面的拓扑拓扑量子计算和DNA计算。在新型号中,量子计算机是量子空间本身,相应的量子算法是指结的拓扑不变性的计算,链接和缠结。讨论了GTQC在量子复杂性理论和可计算性理论中的一些应用,特别是猜测Khovanov多项式的结和链接比#P-HARD更坚硬;并且,可以通过基于GTQC的超计算机来计算不可计算的同源形态问题。

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