By Naruo Sasaki, Masaru Tsukada (auth.), Professor Toshio Sakurai, Professor Yousuke Watanabe (eds.)
This publication covers numerous of crucial subject matters of present curiosity within the vanguard of scanning probe microscopy. those contain a practical concept of atom-resolving atomic strength microscopy (AFM), basics of MBE development of III-V compound semiconductors and atomic manipulation for destiny single-electron devices.
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Extra info for Advances in Scanning Probe Microscopy
First a method for interpreting frictional force images is described, using the stable region of the tip atom and cantilever basal position. Based on this method, the effects of load, scan direction, and cantilever anisotropy on frictional force images are clarified. Furthermore, it is observed that theoretical images reproduce experimental ones quite well, and the effectiveness of the theoretical simulation is shown. If both calculated and experimental results are steadily stored beyond the conventional framework of research (theory and experiment), FFM will become an indispensable tool for understanding the essence of friction in micro-tribology.
For t ::; 100Q Il-S, the numerical integration is performed using the Runge-Kutta method with an adapted step size control. 001 Il-S. Then the turning point of the tip can be obtained to high accuracy by a root-finding algorithm such as trisection. Thus the vibration amplitude under the stationary state is given as a = Zmax - Zmin for each frequency [! = W/ Wo. t ~ 10- 5 Hz. 36 N. Sasaki and M. , from A to D. This behavior of the resonance curve, in particular, the resonance peak shift in Fig. 27b, is extremely well reproduced by perturbation theory, as can be seen from Fig.
Sasaki, M. Tsukada, S. Fujisawa, Y. Sugawara and S. Morita, Tribol. Lett. 4, 125 (1998). 51. N. Sasaki, M. Tsukada, S. Fujisawa, Y. Sugawara, S. Morita and K. Kobayashi, Phys. Rev. B 57, 3785 (1998). 52. N. Sasaki and M. Tsukada, BUTSURI 52, 704 (1997). 53. H. Holscher, U. D. Schwarz and R. Wiesendanger, Europhys. Lett. 36, 19 (1996). 54. H. Holscher, U. D. Schwarz and R. Wiesendanger, Surf. Sci. 375, 395 (1997). 55. H. Holscher, U. D. Schwarz, O. Zworner and R. Wiesendanger, Phys. Rev. B 57, 2477 (1998).