Applications with a new low-temperature UHV STM at 5 K

被引:12
作者
Backer, T [1 ]
Hovel, H
Tschudy, M
Reihl, B
机构
[1] Omicron Vakuumphys GmbH, D-65232 Taunusstein, Germany
[2] IBM Corp, Zurich Res Lab, CH-8803 Ruschlikon, Switzerland
来源
APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING | 1998年 / 66卷 / Suppl 1期
关键词
D O I
10.1007/s003390051093
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A new dedicated UHV STM for investigations at T less than or equal to 5 K is presented. To achieve such low temperatures and to ensure a high thermal stability, the low-temperature (LT) STM described here has a concentric system of bath cryostats. There are openings for tip and sample exchange at low T, and windows with an infrared radiation shield for optical access, which can both be closed by a door mechanism for LT-STM measurements. Efficient vibration isolation is realized by using spring suspension with eddy current damping. With the 3-d coarse positioning unit any region of interest within 5 mm by 5 mm on the sample is accessible even at 5 K. For short turn-around cycles the sample and tip can both be exchanged at low temperatures. Atomically resolved images of Au(111) at 5 K in UHV demonstrate the excellent performance of this LT STM. As a typical application example the appearance of a charge-density wave on NbSe2, which occurs below a transition temperature of 33.5 K, was imaged.
引用
收藏
页码:S27 / S30
页数:4
相关论文
共 13 条
[1]   PHOTON-EMISSION AT MOLECULAR RESOLUTION INDUCED BY A SCANNING TUNNELING MICROSCOPE [J].
BERNDT, R ;
GAISCH, R ;
GIMZEWSKI, JK ;
REIHL, B ;
SCHLITTLER, RR ;
SCHNEIDER, WD ;
TSCHUDY, M .
SCIENCE, 1993, 262 (5138) :1425-1427
[2]   PHOTON-EMISSION EXPERIMENTS WITH THE SCANNING TUNNELLING MICROSCOPE [J].
COOMBS, JH ;
GIMZEWSKI, JK ;
REIHL, B ;
SASS, JK ;
SCHLITTLER, RR .
JOURNAL OF MICROSCOPY-OXFORD, 1988, 152 :325-336
[3]   IMAGING STANDING WAVES IN A 2-DIMENSIONAL ELECTRON-GAS [J].
CROMMIE, MF ;
LUTZ, CP ;
EIGLER, DM .
NATURE, 1993, 363 (6429) :524-527
[4]   POSITIONING SINGLE ATOMS WITH A SCANNING TUNNELING MICROSCOPE [J].
EIGLER, DM ;
SCHWEIZER, EK .
NATURE, 1990, 344 (6266) :524-526
[5]   LOW-TEMPERATURE ULTRA-HIGH-VACUUM SCANNING TUNNELING MICROSCOPE [J].
GAISCH, R ;
GIMZEWSKI, JK ;
REIHL, B ;
SCHLITTLER, RR ;
TSCHUDY, M ;
SCHNEIDER, WD .
ULTRAMICROSCOPY, 1992, 42 :1621-1626
[6]  
GAISCH R, 1993, APPL PHYS A, V57, P381
[7]   PHOTON-EMISSION WITH THE SCANNING TUNNELING MICROSCOPE [J].
GIMZEWSKI, JK ;
REIHL, B ;
COOMBS, JH ;
SCHLITTLER, RR .
ZEITSCHRIFT FUR PHYSIK B-CONDENSED MATTER, 1988, 72 (04) :497-501
[8]   OBSERVATION OF A SOLITON RECONSTRUCTION OF AU(111) BY HIGH-RESOLUTION HELIUM-ATOM DIFFRACTION [J].
HARTEN, U ;
LAHEE, AM ;
TOENNIES, JP ;
WOLL, C .
PHYSICAL REVIEW LETTERS, 1985, 54 (24) :2619-2622
[9]   SCANNING-TUNNELING-MICROSCOPE OBSERVATION OF THE ABRIKOSOV FLUX LATTICE AND THE DENSITY OF STATES NEAR AND INSIDE A FLUXOID [J].
HESS, HF ;
ROBINSON, RB ;
DYNES, RC ;
VALLES, JM ;
WASZCZAK, JV .
PHYSICAL REVIEW LETTERS, 1989, 62 (02) :214-216
[10]   Controlled cluster condensation into preformed nanometer-sized pits [J].
Hovel, H ;
Becker, T ;
Bettac, A ;
Reihl, B ;
Tschudy, M ;
Williams, EJ .
JOURNAL OF APPLIED PHYSICS, 1997, 81 (01) :154-158