论文标题

纳米力学量子的提案

Proposal for a nanomechanical qubit

论文作者

Pistolesi, F., Cleland, A. N., Bachtold, A.

论文摘要

在广泛的频率上,已经证明了机械振荡器的质量很高。这些还伴随着各种各样的田地和力量,使其成为传感器的理想选择。因此,实现基于机械的量子位可以为量子计算和传感提供重要的新平台。在这里,我们表明,通过将悬浮碳纳米管的一种弯曲模式与纳米管中定义的双量子点的电荷状态耦合,可以在机械振荡器中诱导足够的非谐波性,以便可以将耦合系统用作机械量子量。但是,只有在设备进入超级耦合方案时才能实现这一点。我们讨论了出现非谐调性的条件,并表明可以将哈密顿量映射到非谐波振荡器上,从而使我们能够计算出能级结构以及量子点和机械振荡器的脱谐​​作用如何由Qubit遗传。值得注意的是,由于耦合系统中的几个数量级,预计由于量子点引起的去向。我们概述了QUBIT控制,读取协议,通过将两个量子位耦合到微波腔来实现CNOT门,最后如何将量子使用用作静态力量量子传感器。

Mechanical oscillators have been demonstrated with very high quality factors over a wide range of frequencies. These also couple to a wide variety of fields and forces, making them ideal as sensors. The realization of a mechanically-based quantum bit could therefore provide an important new platform for quantum computation and sensing. Here we show that by coupling one of the flexural modes of a suspended carbon nanotube to the charge states of a double quantum dot defined in the nanotube, it is possible to induce sufficient anharmonicity in the mechanical oscillator so that the coupled system can be used as a mechanical quantum bit. This can however only be achieved when the device enters the ultrastrong coupling regime. We discuss the conditions for the anharmonicity to appear, and we show that the Hamiltonian can be mapped onto an anharmonic oscillator, allowing us to work out the energy level structure and how decoherence from the quantum dot and the mechanical oscillator are inherited by the qubit. Remarkably, the dephasing due to the quantum dot is expected to be reduced by several orders of magnitude in the coupled system. We outline qubit control, readout protocols, the realization of a CNOT gate by coupling two qubits to microwave cavity, and finally how the qubit can be used as a static force quantum sensor.

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