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Assessment of a quantum phase-gate operation based on nonlinear optics

机译:基于非线性光学的量子相闸操作评估

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摘要

We analyze in detail the proposal for a two-qubit gate for travelling single-photon qubits recently presented by Ottaviani [Phys. Rev. A 73, 010301(R) (2006)]. The scheme is based on an ensemble of five-level atoms coupled to two quantum and two classical light fields. The two quantum fields undergo cross-phase modulation induced by electromagnetically induced transparency. The performance of this two-qubit quantum phase gate for travelling single-photon qubits is thoroughly examined in the steady-state and transient regimes, by means of a full quantum treatment of the system dynamics. In the steady-state regime, we find a general trade-off between the size of the conditional phase shift and the fidelity of the gate operation. However, this trade-off can be bypassed in the transient regime, where a satisfactory gate operation is found to be possible, significantly reducing the gate operation time.
机译:我们详细分析了由Ottaviani [Phys。修订版A 73,010301(R)(2006)]。该方案基于耦合到两个量子和两个经典光场的五能级原子的整体。这两个量子场经历由电磁感应的透明感所引起的交叉相位调制。通过对系统动力学进行全面的量子处理,在稳态和瞬态状态下,对行进的单光子量子位的两个量子位量子相位门的性能进行了全面检查。在稳态状态下,我们在条件相移的大小和门运算的保真度之间找到了一个一般的权衡。但是,可以在瞬态状态中绕过这种折衷,在瞬态状态中,可以找到令人满意的栅极操作,从而显着减少了栅极操作时间。

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