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Efficient realization of quantum search algorithm using quantum annealing processor with dissipation

机译:利用带耗散的量子退火处理器高效实现量子搜索算法

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Following experimental work [Nature, 473, 194 (2011)], we propose a new physical scheme for perfect implementation of a quantum search algorithm in the presence of qubits dissipation. It is shown that the Grover algorithm is obtained as a special case of the suggested quantum search algorithm. We have generated the quantum gates to realize the required steps for implementing the algorithm. Experimental evidence has been discussed in which, during a critical portion of quantum annealing, the qubits become entangled, and entanglement persists even as these systems reach equilibrium with a thermal environment. Our results provide an encouraging sign that quantum annealing is a viable technology for large-scale quantum computing. It is shown that the protocol can be successfully implemented within the present experimental limits. (C) 2015 Optical Society of America
机译:经过实验工作[Nature,473,194(2011)],我们提出了一种新的物理方案,用于在存在量子位耗散的情况下完美实现量子搜索算法。结果表明,作为建议的量子搜索算法的特例,获得了格罗弗算法。我们已经生成了量子门,以实现实现该算法所需的步骤。已经讨论了实验证据,其中在量子退火的关键部分,量子位纠缠,并且即使这些系统在热环境下达到平衡,纠缠也持续存在。我们的结果提供了令人鼓舞的迹象,表明量子退火是用于大规模量子计算的可行技术。结果表明,该协议可以在目前的实验范围内成功实现。 (C)2015年美国眼镜学会

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