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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Hybrid paramagnetic-ferromagnetic quantum computer design based on electron spin arrays and a ferromagnetic nanostripe
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Hybrid paramagnetic-ferromagnetic quantum computer design based on electron spin arrays and a ferromagnetic nanostripe

机译:基于电子自旋阵列和铁磁纳米带的混合顺磁-铁磁量子计算机设计

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摘要

Electron spins placed in a magnetic field gradient, interacting by dipolar magnetic couplings and manipulated by microwave pulses represent a possible architecture for a quantum computer. Here, a general design for the practical implementation of such nanodevice is presented on the example of electron spins in silicon carbide placed nearby a permalloy ferromagnetic nanostripe. Firstly, the confined spin wave resonance spectrum of the nanostripe and the properties of its magnetic field gradient are calculated. Then, I show how to avoid microwave driven electron spin decoherence. Then, I show that at temperatures requiring only nitrogen gaz cooling, the silicon vacancy decoherence process due to ferromagnetic fluctuations is negligible compared to the one due to a two phonons Raman process, as long as the silicon vacancies spins are placed far enough from the ferromagnetic nanostripe. I then show that a nitrogen cooled hybrid quantum processor with 32 silicon vacancies spins qubits in SiC is theoretically possible. NV centers in diamond, N@C60 molecules, and radical molecules are three other good spin qubits candidates for implementing this hybrid quantum processor.
机译:放置在磁场梯度中的电子自旋,通过偶极磁耦合相互作用并通过微波脉冲操纵的电子自旋代表了量子计算机的可能体系结构。在此,在放置在坡莫合金铁磁纳米条带附近的碳化硅中的电子自旋的示例中,给出了这种纳米器件的实际实现的一般设计。首先,计算了纳米条带的自旋波共振谱及其磁场梯度的性质。然后,我展示了如何避免微波驱动的电子自旋退相干。然后,我表明,在仅需氮气冷却的温度下,与硅的两个声子拉曼过程相比,由于铁磁波动而导致的硅空位去相干过程可以忽略不计,只要硅空位自旋距铁磁性足够远纳米带。然后,我证明了理论上可以实现具有32个硅空位自旋量子位的SiC的氮冷却混合量子处理器。 NV位于金刚石,N @ C60分子和自由基分子的中心是实现此混合量子处理器的其他三个良好的自旋量子位。

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