Högele Alexander, Seidl Stefan, Kroner Martin, Karrai Khaled, Schulhauser Christian, Sqalli Omar, Scrimgeour Jan, Warburton Richard J
Center for NanoScience, Department für Physik, Ludwig-Maximilians-Universität, Geschwister-Scholl-Platz 1, 80539 München, Germany.
Rev Sci Instrum. 2008 Feb;79(2 Pt 1):023709. doi: 10.1063/1.2885681.
We describe the design and performance of a fiber-based confocal microscope for cryogenic operation. The microscope combines positioning at low temperatures along three space coordinates of millimeter translation and nanometer precision with high stability and optical performance at the diffraction limit. It was successfully tested under ambient conditions as well as at liquid nitrogen (77 K) and liquid helium (4 K) temperatures. The compact nonmagnetic design provides for long term position stability against helium refilling transfers, temperature sweeps, as well as magnetic field variation between -9 and 9 T. As a demonstration of the microscope performance, applications in the spectroscopy of single semiconductor quantum dots are presented.
我们描述了一种用于低温操作的基于光纤的共聚焦显微镜的设计与性能。该显微镜将沿三个空间坐标(毫米级平移和纳米级精度)在低温下的定位与衍射极限下的高稳定性和光学性能相结合。它已在环境条件以及液氮(77 K)和液氦(4 K)温度下成功测试。紧凑的非磁性设计可确保在氦气再填充转移、温度扫描以及 -9 至 9 T 的磁场变化过程中长期保持位置稳定性。作为显微镜性能的展示,还介绍了其在单半导体量子点光谱学中的应用。