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Nonadiabatic Controlled-not Gate For The Kane Solid-state Quantum Computer

机译:凯恩固态量子计算机的非绝热可控非门

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摘要

The method of iterated resolvents is used to obtain an effective Hamiltonian for neighbouring qubits in the Kane solid state quantum computer. In contrast to the adiabatic gate processes inherent in the Kane proposal we show that free evolution of the qubit-qubit system, as generated by this effective Hamiltonian, combined with single qubit operations, is sufficient to produce a controlled-NOT (c-NOT) gate. Thus the usual set of universal gates can be obtained on the Kane quantum computer without the need for adiabatic switching of the controllable parameters as prescribed by Kane. Both the fidelity and gate time of this non-adiabatic c-NOT gate are determined by numerical simulation.
机译:在Kane固态量子计算机中,迭代求解方法用于获得相邻量子位的有效哈密顿量。与凯恩(Kane)提案固有的绝热门过程相反,我们表明,由这种有效的哈密顿量产生的量子位-量子位系统的自由演化,与单个量子位运算相结合,足以产生受控NOT(c-NOT)门。因此,可以在凯恩量子计算机上获得通用闸门的通用集合,而无需如凯恩所规定的那样对可控参数进行绝热切换。这种非绝热c-NOT门的保真度和门时间均通过数值模拟确定。

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