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Nanoscale Imaging of Buried Structures via Scanning Near-Field Ultrasound Holography G. S. Shekhawat and V. P. Dravid, Science, 310, 89(2005). Journal Club Presentation 30/10/06 Onur Basarir
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Background AFM (Atomic Force Microscopy)
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AFM Superb spatial resolution, but nothing about subsurface properties.
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Motivation Near field SPM Excellent lateral resolution Ultrasound Non-destructive and depth sensitive Holography Sensitive to phase
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1 - Ultrasonic Force Microscopy O. Kolosov et.al, PRL, 81, 1046 (1998) F. Dinelli,et.al, PRB, 61,13995(2000).
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2 – Acoustic Force Microscopy U. Rabe et.al.,Ultrasonics, 38, 430(2000).
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3 – Heterodyne Force Microscopy M T Cuberes et al 2000 J. Phys. D: Appl. Phys. 33 2347-2355
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Drawbacks of these Techniques Contact mode Amplitude measurements
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Setup
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Setup for non-contact operation Lock-in f2f2 f1f1 f 2 -f 1
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Results I Nanostructures 500 nm below the surface
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Results II
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Results III
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Results I V
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Conclusion Non-invasive: based on acoustic waves Sub-surface: transparent to acoustic waves Nano-scale resolution
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Contact AFM
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Non-Contact AFM
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Tapping Mode AFM
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