论文标题
开发近5 kelvin,无冰冻管冰箱基于扫描探针显微镜的开发
Development of a near-5-Kelvin, cryogen-free, pulse-tube refrigerator-based scanning probe microscope
论文作者
论文摘要
我们报告了不含低温的,脉冲管冰箱(PTR)的扫描探针显微镜(SPM)系统的设计和性能,能够在接近5K的基础温度下运行。我们通过将自动气体处理系统与PTR冷头和SPM头之间的自制界面设计结合在一起来实现这一目标。界面设计通过将Polytetrafluoroethylene和不锈钢波纹管组合在一起,通过将SPM头放在被动振动隔离台上,通过两个冷阶段连接到热辐射屏蔽层,将SPM头放在被动振动隔离台上,从而隔离了PTR振动。气体处理系统调节氦气热量压力,从而促进冷却到基础温度的冷却和维持。我们使用测量的振动,当前噪声,温度和压力数据讨论每个组件的影响。我们证明,我们的SPM系统性能与已知的液氧系统相媲美,并通过测量了PB的超导差距光谱,原子分辨率扫描隧道显微镜图像和AU表面的准粒子干扰模式,以及非接触式原子力显微镜显微镜图像Nacl(100)表面。不需要低温填充,当前的SPM系统可以实现不间断的低温测量值。
We report the design and performance of a cryogen-free, pulse-tube refrigerator (PTR)-based scanning probe microscopy (SPM) system capable of operating at the base temperature of near 5K. We achieve this by combining a home-made interface design between the PTR cold head and the SPM head, with an automatic gas-handling system. The interface design isolates the PTR vibrations by a combination of polytetrafluoroethylene and stainless-steel bellows, and by placing the SPM head on a passive vibration isolation table via two cold stages that are connected to thermal radiation shields using copper heat links. The gas-handling system regulates the helium heat-exchange gas pressures, facilitating both the cool down to and the maintenance of the base temperature. We discuss the effects of each component using measured vibration, current-noise, temperature, and pressure data. We demonstrate that our SPM system performance is comparable to known liquid-helium-based systems with the measurements of the superconducting gap spectrum of Pb, atomic-resolution scanning tunneling microscopy image and quasiparticle interference pattern of Au(111) surface, and non-contact atomic force microscopy image of NaCl(100) surface. Without the need for cryogen refills, the current SPM system enables uninterrupted low-temperature measurements.