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首页> 外文期刊>Lobachevskii journal of mathematics >Quantum Computer with Atomic Logical Qubits Encoded on Macroscopic Three-Level Systems in Common Quantum Electrodynamic Cavity
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Quantum Computer with Atomic Logical Qubits Encoded on Macroscopic Three-Level Systems in Common Quantum Electrodynamic Cavity

机译:在普通量子电腔中在宏观三级系统上编码有原子逻辑量子位的量子计算机

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We propose an effective realization of the universal set of elementary quantum gates in solid state quantum computer based on macroscopic (or mesoscopic) resonance systems – multiatomic coherent ensembles, squids or quantum dots in quantum electrodynamic cavity. We exploit an encoding of logical qubits by the pairs of the macroscopic two- or three-level atoms that is working in a Hilbert subspace of all states inherent to these atomic systems. In this subspace, logical single qubit gates are realized by the controlled reversible transfer of single atomic excitation in the pair via the exchange of virtual photons and by the frequency shift of one of the atomic ensembles in a pair. In the case of two-level systems, the logical two-qubit gates are performed by the controlling of Lamb shift magnitude in one atomic ensemble, allowing/blocking the excitation transfer in a pair, respectively, that is controlled by the third atomic system of another pair. When using three-level systems, we describe the NOT-gate in the atomic pair controlled by the transfer of working atomic excitation to the additional third level caused by direct impact of the control pair excitation. Finally, we discuss advantages of the proposed physical system for accelerated computation of some useful quantum gates.
机译:我们提出了基于宏观(或介观)共振系统-量子电动力腔中的多原子相干集合体,鱿鱼或量子点的固态量子计算机通用基本量子门集的有效实现。我们利用在原子系统固有的所有状态的希尔伯特子空间中工作的宏观两级或三级原子对对逻辑量子位进行编码。在这个子空间中,逻辑单量子位门是通过虚拟光子的交换,通过成对的单个原子激发的可控可逆传递,以及成对的原子集合之一的频移来实现的。在两级系统的情况下,逻辑二比特门是通过控制一个原子团中的兰姆位移幅度来执行的,从而分别允许/阻止成对的激发传递,这是由原子的第三原子系统控制的。另一对。当使用三能级系统时,我们描述了原子对中的非门(NOT-gate),其受工作原子激发到控制对激发直接影响所导致的附加第三能级的转移所控制。最后,我们讨论了所提出的物理系统在加速一些有用的量子门计算中的优势。

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