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Titlebook: Bringing Scanning Probe Microscopy up to Speed; S. C. Minne,S. R. Manalis,C. F. Quate Book 1999 Kluwer Academic Publishers 1999 Helium-Ato

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發(fā)表于 2025-3-21 19:49:33 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Bringing Scanning Probe Microscopy up to Speed
影響因子2023S. C. Minne,S. R. Manalis,C. F. Quate
視頻videohttp://file.papertrans.cn/191/190852/190852.mp4
學(xué)科分類Microsystems
圖書(shū)封面Titlebook: Bringing Scanning Probe Microscopy up to Speed;  S. C. Minne,S. R. Manalis,C. F. Quate Book 1999 Kluwer Academic Publishers 1999 Helium-Ato
影響因子.Bringing Scanning Probe Microscopy Up to Speed. introducesthe principles of scanning probe systems with particular emphasis ontechniques for increasing speed. The authors include usefulinformation on the characteristics and limitations of currentstate-of-the-art machines as well as the properties of the systemsthat will follow in the future. The basic approach is two-fold. First,fast scanning systems for single probes are treated and, second,systems with multiple probes operating in parallel are presented..The key components of the SPM are the mechanical microcantilever withintegrated tip and the systems used to measure its deflection. Inessence, the entire apparatus is devoted to moving the tip over asurface with a well-controlled force. The mechanical response of theactuator that governs the force is of the utmost importance since itdetermines the scanning speed. The mechanical response relatesdirectly to the size of the actuator; smaller is faster. Traditionalscanning probe microscopes rely on piezoelectric tubes of centimetersize to move the probe. In future scanning probe systems, the largeactuators will be replaced with cantilevers where the actuators areintegrated on the be
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Cantilevers with Interdigital Deflection Sensors,formable, diffraction grating etched into the cantilever beam. In the new sensor several sets of rectangular fingers mesh together to form a deformable diffraction grating. This type of interference sensor is commonly known as the ‘interdigital’ cantilever. The intensity of the light diffracted into
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Operation of the Interdigital Cantilever,n. This is because the laser focal spot is generally large enough to illuminate a few sets of interdigital fingers and the split photodetector is typically placed more than one centimeter from the cantilever which is in the far field diffraction region.
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Cantilever Arrays,tells us that “making things smaller brings benefits — they’re less expensive, you get more portability and more performance per dollar.”. As this trend continues, microelectronics will give way to nanoelectronics. For this to happen we must find methods suitable for dealing with nanoscale devices.
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Scanning Probes for Information Storage and Retrieval,d. We will describe the work on writing bits on magnetic media, although there are other strategies for storing data with scanning probes. Mamin. has worked out a system where he creates small indents in PMMA for storing a single bit. Barrett. has employed the probe to store and read bits as trapped
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Silicon Process Flow: ZnO actuator and piezoresistive sensor,r different doping levels. This is most easily done using the tables published by Kanda.. Figure8.1.1a is the plot of piezoresistive coefficients for the different orientations of silicon. We are primarily concerned with (110) orientation in the top half of the figure, which gives the longitudinal c
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Book 1999ng speed. The authors include usefulinformation on the characteristics and limitations of currentstate-of-the-art machines as well as the properties of the systemsthat will follow in the future. The basic approach is two-fold. First,fast scanning systems for single probes are treated and, second,sys
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發(fā)表于 2025-3-23 09:16:36 | 只看該作者
Increasing the Speed of Imaging,nsverse (x-y) plane is the source of the problem. The scanning speed can be increased with an integrated actuator that acts only on the cantilever as described in this chapter. The scanned area can be increased with parallel arrays of cantilevers as described in Chapter 6.
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