Zatelli Francesco, van Driel David, Xu Di, Wang Guanzhong, Liu Chun-Xiao, Bordin Alberto, Roovers Bart, Mazur Grzegorz P, van Loo Nick, Wolff Jan C, Bozkurt A Mert, Badawy Ghada, Gazibegovic Sasa, Bakkers Erik P A M, Wimmer Michael, Kouwenhoven Leo P, Dvir Tom
QuTech and Kavli Institute of NanoScience, Delft University of Technology, Delft, The Netherlands.
Department of Applied Physics, Eindhoven University of Technology, Eindhoven, The Netherlands.
Nat Commun. 2024 Sep 11;15(1):7933. doi: 10.1038/s41467-024-52066-2.
Kitaev chains in quantum dot-superconductor arrays are a promising platform for the realization of topological superconductivity. As recently demonstrated, even a two-site chain can host Majorana zero modes known as "poor man's Majorana". Harnessing the potential of these states for quantum information processing, however, requires increasing their robustness to external perturbations. Here, we form a two-site Kitaev chain using Yu-Shiba-Rusinov states in proximitized quantum dots. By deterministically tuning the hybridization between the quantum dots and the superconductor, we observe poor man's Majorana states with a gap larger than 70 μeV. The sensitivity to charge fluctuations is also greatly reduced compared to Kitaev chains made with non-proximitized dots. The systematic control and improved energy scales of poor man's Majorana states realized with Yu-Shiba-Rusinov states will benefit the realization of longer Kitaev chains, parity qubits, and the demonstration of non-Abelian physics.
量子点-超导体阵列中的基塔耶夫链是实现拓扑超导的一个很有前景的平台。正如最近所证明的,即使是一个双位点链也可以容纳被称为“穷人的马约拉纳”的马约拉纳零模。然而,要利用这些态在量子信息处理方面的潜力,需要提高它们对外部扰动的鲁棒性。在这里,我们利用近邻量子点中的汤川-芝-鲁西诺夫态形成一个双位点基塔耶夫链。通过确定性地调节量子点与超导体之间的杂化,我们观测到了能隙大于70 μeV的穷人的马约拉纳态。与由非近邻量子点构成的基塔耶夫链相比,其对电荷涨落的敏感度也大大降低。利用汤川-芝-鲁西诺夫态实现的穷人的马约拉纳态的系统控制和改进的能量尺度,将有利于实现更长的基塔耶夫链、宇称量子比特以及非阿贝尔物理的演示。