返回
Single-electron routing in a silicon quantum-dot array
DOI:10.1103/PhysRevB.108.235308.png)
摘要
En 中文
The ability to transport single electrons on a quantum dot array dramatically increases the freedom in designing quantum computation schemes that can be implemented on solid-state devices. So far, however, routing schemes to precisely control the transport paths of single electrons have yet to be established. Here, we propose a silicon single-electron router that transports pumped electrons along the desired route on the branches of a T-shaped quantum dot array by inputting a synchronous phase-controlled signal to multiple gates. Notably, we show that it is possible to achieve a routing accuracy above 99% by boosting the accuracy of the electron-transport timing with an assist gate in front of the branching paths. We also evaluated the minimum error rate of routing by the model of electron transport based on the Wigner representation in an energy-time space. The results suggest possibilities for fast and accurate transport of single electrons on the two-dimensional quantum dot arrays.
Keyword:
ARCHITECTURE
COMPUTATION
期刊
IF:
3.7
论文数:
15.4W
被引数:
41.0W
机构
引用论文
A shuttling-based two-qubit logic gate for linking distant silicon quantum processors基于穿梭的双量子位逻辑门,用于连接遥远的硅量子处理器
NATURE COMMUNICATIONS
IF15.7

