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使用高电子迁移率晶体管的低温量子计算机控制信号生成

Cryogenic quantum computer control signal generation using high-electron-mobility transistors.

作者信息

Ferraris Alberto, Cha Eunjung, Mueller Peter, Moselund Kirsten, Zota Cezar B

机构信息

IBM Research Europe - Zürich, Rüschlikon, Switzerland.

EPFL - Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.

出版信息

Commun Eng. 2024 Oct 15;3(1):146. doi: 10.1038/s44172-024-00293-2.

Abstract

Multiplexed local charge storage, close to quantum processors at cryogenic temperatures could generate a multitude of control signals, for electronics or qubits, in an efficient manner. Such cryogenic electronics require generating quasi-static control signals with small area footprint, low noise, high stability, low power dissipation and, ideally, in a multiplexed fashion to reduce the number of input/outputs. In this work, we integrate capacitors with cryogenic high-electron mobility transistor (HEMT) arrays and demonstrate quasi-static bias generation using gate pulses controlled in time and frequency domains. Multi-channel bias generation is also demonstrated. Operation at 4 K exhibits improved bias signal variability and greatly reduced subthreshold swing, reaching values of ~6 mV/decade. Due to the very low threshold voltage of 80 mV at 4 K and the steep subthreshold swing, these circuits can provide an advantage over the silicon-based complementary metal-oxide-semiconductor equivalents by allowing operation at significantly reduced drive bias in the low output voltage regime <1 V. Together with their high-speed operation, this makes HEMTs an attractive platform for future cryogenic signal generation electronics in quantum computers.

摘要

在低温下靠近量子处理器进行多路复用本地电荷存储,可以高效地为电子设备或量子比特生成大量控制信号。此类低温电子设备需要生成具有小面积占用、低噪声、高稳定性、低功耗的准静态控制信号,理想情况下,应以多路复用方式减少输入/输出数量。在这项工作中,我们将电容器与低温高电子迁移率晶体管(HEMT)阵列集成,并展示了使用在时域和频域中控制的栅极脉冲生成准静态偏置。还展示了多通道偏置生成。在4K温度下运行时,偏置信号的变化性得到改善,亚阈值摆幅大大降低,达到约6mV/十倍频的值。由于在4K温度下阈值电压极低,仅为80mV,且亚阈值摆幅陡峭,这些电路在低输出电压范围<1V时,通过允许在显著降低的驱动偏置下运行,相比基于硅的互补金属氧化物半导体等效电路具有优势。再加上它们的高速运行,这使得HEMT成为未来量子计算机低温信号生成电子设备的一个有吸引力的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c39/11480393/78ef79f917f4/44172_2024_293_Fig1_HTML.jpg

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