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采用热扫描探针光刻和激光直写相结合的方法快速制作硅点接触量子点晶体管。

Fast turnaround fabrication of silicon point-contact quantum-dot transistors using combined thermal scanning probe lithography and laser writing.

机构信息

IBM Research-Zurich, Saeumerstrasse 4, 8803 Rueschlikon, Switzerland.

出版信息

Nanotechnology. 2018 Dec 14;29(50):505302. doi: 10.1088/1361-6528/aae3df. Epub 2018 Sep 24.

Abstract

The fabrication of high-performance solid-state silicon quantum-devices requires high resolution patterning with minimal substrate damage. We have fabricated room temperature (RT) single-electron transistors (SETs) based on point-contact tunnel junctions using a hybrid lithography tool capable of both high resolution thermal scanning probe lithography and high throughput direct laser writing. The best focal z-position and the offset of the tip- and the laser-writing positions were determined in situ with the scanning probe. We demonstrate <100 nm precision in the registration between the high resolution and high throughput lithographies. The SET devices were fabricated on degenerately doped n-type >10/cm silicon on insulator chips using a CMOS compatible geometric oxidation process. The characteristics of the three devices investigated were dominated by the presence of Si nanocrystals or phosphorous atoms embedded within the SiO, forming quantum dots (QDs). The small size and strong localisation of electrons on the QDs facilitated SET operation even at RT. Temperature measurements showed that in the range 300 K > T > ∼100 K, the current flow was thermally activated but at <100 K, it was dominated by tunnelling.

摘要

制造高性能的固态硅量子器件需要高分辨率的图案化,同时尽量减少衬底损伤。我们使用一种混合光刻工具制造了基于点接触隧道结的室温(RT)单电子晶体管(SET),该工具能够进行高分辨率热扫描探针光刻和高吞吐量直接激光写入。使用扫描探针原位确定最佳聚焦 z 位置和尖端与激光写入位置之间的偏移量。我们在高分辨率和高吞吐量光刻之间的注册中实现了<100nm 的精度。SET 器件是在退化掺杂的 n 型>10/cm 硅上绝缘体芯片上使用与 CMOS 兼容的几何氧化工艺制造的。所研究的三个器件的特性主要由嵌入在 SiO2 中的 Si 纳米晶体或磷原子形成量子点(QD)决定。QD 上电子的小尺寸和强局域化使得 SET 操作即使在 RT 下也能进行。温度测量表明,在 300 K>T>∼100 K 的范围内,电流流动是热激活的,但在<100 K 时,它主要由隧道效应主导。

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