A scalable helium gas cooling system for trapped-ion applications
A scalable helium gas cooling system for trapped-ion applications
复制标题
用于俘获离子应用的可扩展氦气冷却系统
DOI:
10.1088/2058-9565/ac5d7d
复制
发表时间:
2022-04-01
影响因子:
6.7
通讯作者:
Hensinger, W. K.
中科院分区:
文献类型:
--
作者:
Lebrun-Gallagher, F. R.;Johnson, N., I;Hensinger, W. K.
Microfabricated ion-trap devices offer a promising pathway towards scalable quantum computing Research efforts have begun to focus on the engineering challenges associated with developing large-scale ion-trap arrays and networks. However, increasing the size of the array and integrating on-chip electronics can drastically increase the power dissipation within the ion-trap chips. This leads to an increase in the operating temperature of the ion-trap and limits the device performance. Therefore, effective thermal management is an essential consideration for any large-scale architecture. Presented here is the development of a modular cooling system designed for use with multiple ion-trapping experiments simultaneously. The system includes an extensible cryostat that permits scaling of the cooling power to meet the demands of a large network. Following experimental testing on two independent ion-trap experiments, the cooling system is expected to deliver a net cooling power of 111 W at similar to 70 K to up to four experiments. The cooling system is a step towards meeting the practical challenges of operating large-scale quantum computers with many qubits.