Scanning Probe Lithography

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出版者:Kluwer Academic Pub 作者:Soh, Hyongsok T./ Guarini, Kathryn Wilder/ Quate, Calvin F. 出品人: 页数:220 译者: 出版时间:2001-6 价格:$ 202.27 装帧:HRD isbn号码:9780792373612 丛书系列:
图书标签
  • 纳米技术
  • 扫描探针显微镜
  • 光刻技术
  • 纳米制造
  • 表面科学
  • 材料科学
  • 薄膜技术
  • 微纳加工
  • 生物纳米技术
  • 半导体物理
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具体描述

Scanning Probe Lithography (SPL) describes recent advances in the field of scanning probe lithography, a high resolution patterning technique that uses a sharp tip in close proximity to a sample to pattern nanometer-scale features on the sample. SPL is capable of patterning sub-30nm features with nanometer-scale alignment registration. It is a relatively simple, inexpensive, reliable method for patterning nanometer-scale features on various substrates. It has potential applications for nanometer-scale research, for maskless semiconductor lithography, and for photomask patterning. The authors of this book have been key players in this exciting new field. Calvin Quate has been involved since the beginning in the early 1980s and leads the research time that is regarded as the foremost group in this field. Hyongsok Tom Soh and Kathryn Wilder Guarini have been the members of this group who, in the last few years, have brought about remarkable series of advances in SPM lithography. Some of these advances have been in the control of the tip which has allowed the scanning speed to be increased from mum/second to mm/second. Both non-contact and in-contact writing have been demonstrated as has controlled writing of sub-100 nm lines over large steps on the substrate surface. The engineering of a custom-designed MOSFET built into each microcantilever for individual current control is another notable achievement. Micromachined arrays of probes each with individual control have been demonstrated. One of the most intriguing new aspects is the use of directly-grown carbon nanotubes as robust, high-resolution emitters. In this book the authors concisely and authoritatively describe the historical context, the relevant inventions, and the prospects for eventual manufacturing use of this exciting new technology.

该书《Scanning Probe Lithography》系统地探讨了扫描探针技术在现代微纳制造中的重要作用。这本书详细阐述了这一领域的历史发展、核心原理及其在不同应用场景中的重要性。内容覆盖了从基本概念到最新研究进展,帮助读者全面了解扫描探针技术如何通过精确操作微观结构,对芯片制造、材料科学和纳米技术产生深远影响。 书中首先对扫描探针技术进行深入解析,介绍了多种常见的类型,包括原子力显微镜(AFM)、扫描电子显微镜(SEM)以及激光诱导电晕光刻等技术,并详细描述其工作机制及其在各类实验环境中的操作方式。这部分内容不仅帮助读者了解这些工具的基本原理,还提供了具体的应用示例,使得读者能够清晰理解不同扫描探针技术在实际研究和工业生产中的作用。 此外,书中还深入分析了扫描探针技术在纳米材料加工、微结构制造及表面工程等领域的重要性。这些内容不仅包括典型的工艺流程,还讨论了其在制造高性能电子器件、生物传感器和新功能材料中的具体应用。通过这些详细的分析,读者能够把握扫描探针技术如何推动相关产业的发展,并为未来的创新提供方向。 书中还特别注重对最新研究成果的综述,涵盖了新型扫描探针技术的开发、工艺优化以及跨学科融合带来的新突破。这些内容不仅展示了当前领域的前沿进展,还指出未来研究可能面临的挑战和机遇。通过引用大量实例与案例,书中的论述力求生动形象地呈现复杂技术,帮助读者更好地掌握其理论基础和实际应用。 在结构设计方面,书中采用了分章节的形式,从概念起源到现代应用,再到未来展望,逻辑清晰、内容全面。每一章都通过详细的数据与图表支持论点,使得技术信息易于理解和应用。这种严谨而系统的写作风格,使书不仅适合专业读者阅读,更能为非专家提供一个深入了解扫描探针技术的重要平台。 总体来说,这本书以高清晰度、全面性著称,充分展现了扫描探针技术在现代科学和工程中的关键地位。它不仅为读者提供了丰富的理论知识,还通过详实的实例与研究成果,增强了其可读性和应用价值。这是一本深受学术界推崇的经典参考书,有助于推动相关领域的持续发展和创新。

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