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April 1, 2026

Real-time atomic-resolution imaging of crystal growth process in water by phase modulation atomic force microscopy at one frame per second

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Authors

KMKazuki MiyataHAHitoshi AsakawaKanazawa UniversityTFTakeshi FukumaKanazawa University

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Implication

Dynamic-mode AFM achieves atomic-scale imaging of crystal growth in water, suggesting new research possibilities.

Key Points

  • This research aims to enhance the imaging speed of atomic force microscopy to observe crystal growth processes in real-time.
  • Developed a wideband, low-latency phase detector
  • Implemented an improved algorithm for signal complexification
  • Utilized dynamic-mode AFM for imaging in liquid
  • Achieved atomic-scale imaging of calcite crystal growth in water
  • Demonstrated imaging at a rate of one frame per second
  • Enabled exploration of atomic-scale interfacial processes

Cite This Study

Miyata et al. (2013) studied this question.

synapsesocial.com/papers/69cd7a2b5652765b073a70cdhttps://doi.org/10.24517/00008495
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Improvements in fundamental performance of liquid-environment atomic force microscopy with true atomic resolution2015
  2. 2High-speed atomic force microscopy2012
  3. 3Dissolution Processes at Step Edges of Calcite in Water Investigated by High-Speed Frequency Modulation Atomic Force Microscopy and Simulation2017
  4. 4Breaking the speed limit with atomic force microscopy2006 · 231 citations
  5. 5Molecular-Level Imaging of Thin Film Ice Crystal Growth by Atomic Force Microscopy1995