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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Adiabatic coherent control in the anharmonic ion trap: Numerical analysis of vibrational anharmonicities
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Adiabatic coherent control in the anharmonic ion trap: Numerical analysis of vibrational anharmonicities

机译:非谐离子阱中的绝热相干控制:振动非谐性的数值分析

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摘要

Anharmonicity of the quantized motional states of ions in a Paul trap can be utilized to address the state-to-state transitions selectively and control the motional modes of trapped ions coherently and adiabatically [Zhao and Babikov, Phys. Rev. A 77, 012338 (2008)]. In this paper we study two sources of the vibrational anharmonicity in the ion traps: the intrinsic Coulomb anharmonicity due to ion-ion interactions and the external anharmonicity of the trapping potential. An accurate numerical approach is used to compute energies and wave functions of vibrational eigenstates. The magnitude of the Coulomb anharmonicity is determined and shown to be insufficient for successful control. In contrast, anharmonicity of the trapping potential allows one to control the motion of ions very efficiently using the time-varying electric fields. Optimal control theory is used to derive the control pulses. One ion in a slightly anharmonic trap can be easily controlled. In the two- and three-ion systems the symmetric stretching mode is dark and cannot be controlled at all. The other two normal modes of the three-ion system can be controlled and used, for example, to encode a two-qubit system into the motional states of ions. A trap architecture that allows the necessary amount of vibrational anharmonicity to be achieved is proposed.
机译:可以利用Paul阱中离子的定量运动状态的非谐性来选择性地处理状态间的跃迁,并相干地和绝热地控制被困离子的运动模式[Zhao and Babikov,Phys。 Rev.A 77,012338(2008)]。在本文中,我们研究了离子阱中振动非谐性的两个根源:由于离子-离子相互作用而产生的固有库仑非谐性和阱势的外部非谐性。一种精确的数值方法用于计算振动本征态的能量和波函数。确定库仑非谐波的幅度,并显示不足以成功控制。相反,俘获电势的非谐性使人们可以使用时变电场非常有效地控制离子的运动。最优控制理论用于导出控制脉冲。轻度非谐阱中的一个离子很容易控制。在两离子和三离子系统中,对称拉伸模式很暗,根本无法控制。可以控制和使用三离子系统的其他两种正常模式,例如,将两量子位系统编码为离子的运动状态。提出了一种陷阱架构,该架构允许实现必要数量的振动非谐性。

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