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Generation of four-atom cluster states in thermal cavity and implementing remote controlled not gate

机译:在热腔中生成四原子簇状态并实现远程控制非门

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摘要

We propose an experimentally feasible scheme for preparing a four-atom cluster state in a thermal cavity. In the scheme, the cavity field is only virtually excited and the photon-number-dependent part in the effective Hamiltonian is cancelled so that the system is insensitive to the cavity decay and the thermal field. At the same time, the scheme can be generalized to prepare n-atom cluster states with the success probability 100%. In addition, using the four-atom cluster state, we also propose a simpler scheme for implementing a remote-controlled not gate (CNOT) without the Bell states measurement.
机译:我们提出了一种在热腔中制备四原子簇状态的实验可行方案。在该方案中,实际上只激发了腔场,并且消除了有效哈密顿量中依赖于光子数的部分,因此系统对腔衰变和热场不敏感。同时,可以推广该方案以准备成功概率为100%的n原子簇状态。另外,使用四原子簇状态,我们还提出了一种更简单的方案,用于在无需贝尔状态测量的情况下实现远程控制非门(CNOT)。

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