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Coherent tunneling adiabatic passage with the alternating coupling scheme

机译:交替耦合方案的相干隧道绝热通道

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The use of adiabatic passage techniques to mediate particle transport through real space, rather than phase space, is becoming an interesting possibility. We have investigated the properties of coherent tunneling adiabatic passage (CTAP) with alternating tunneling matrix elements. This coupling scheme, not previously considered in the donor in silicon paradigm, provides an interesting route to long-range quantum transport. We introduce simplified coupling protocols and transient eigenspectra as well as a realistic gate design for this transport protocol. Using a pairwise treatment of the tunnel couplings for a five-donor device with 30 nm donor spacings, 120 nm total chain length, we estimate the timescale required for adiabatic operation to be ~70 ns, a time well within the measured electron spin and estimated charge relaxation times for phosphorus donors in silicon.
机译:使用绝热通道技术来介导通过真实空间而不是相空间的粒子传输正在成为一种有趣的可能性。我们研究了具有交替隧穿矩阵元素的相干隧穿绝热通道(CTAP)的特性。这种耦合方案以前没有在硅范例的供体中考虑,为长距离量子传输提供了一条有趣的途径。我们介绍了简化的耦合协议和瞬态本征谱,以及针对该传输协议的实际门设计。通过对成对的施主间距为30 nm,总链长为120 nm的五施主器件的隧道耦合进行成对处理,我们估计绝热操作所需的时间标度为〜70 ns,这是在测得的电子自旋范围内的时间,硅中磷供体的电荷弛豫时间。

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