Mashoff T, Pratzer M, Morgenstern M
2nd Institute of Physics, RWTH Aachen University and JARA-FIT, Otto-Blumenthal-Strasse, Aachen NRW 52074, Germany.
Rev Sci Instrum. 2009 May;80(5):053702. doi: 10.1063/1.3127589.
We present a low-temperature ultrahigh vacuum (UHV) scanning tunneling microscope setup with a combination of a superconducting solenoid coil and two split-pair magnets, providing a rotatable magnetic field up to 500 mT applicable in all spatial directions. An absolute field maximum of B=7 T(3 T) can be applied perpendicular (parallel) to the sample surface. The instrument is operated at a temperature of 4.8 K. Topographic and spectroscopic measurements on tungsten carbide and indium antimonide revealed a z-noise of 300 fm(pp), which barely changes in magnetic field. The microscope is equipped with a tip exchange mechanism and a lateral sample positioning stage, which allows exact positioning of the tip with an accuracy of 5 microm prior to the measurement. Additional contacts to the sample holder allow, e.g., the application of an additional gate voltage. The UHV part of the system contains versatile possibilities of in situ sample and tip preparation as well as low-energy electron diffraction and Auger analysis.
我们展示了一种低温超高真空(UHV)扫描隧道显微镜装置,它结合了一个超导螺线管线圈和两个分裂对磁铁,可提供高达500 mT的可在所有空间方向应用的旋转磁场。垂直(平行)于样品表面可施加的绝对磁场最大值为B = 7 T(3 T)。该仪器在4.8 K的温度下运行。对碳化钨和锑化铟进行的形貌和光谱测量显示,z噪声为300 fm(峰峰值),在磁场中几乎没有变化。显微镜配备了尖端交换机构和横向样品定位台,这使得在测量前能够以5微米的精度精确地定位尖端。与样品架的额外连接允许例如施加额外的栅极电压。该系统的超高真空部分具备原位样品和尖端制备以及低能电子衍射和俄歇分析的多种可能性。