References on AFM-related Techniques 

 

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2013

1

M. Fairbairn and S. O. R. Moheimani

Sensorless enhancement of an atomic force microscope micro-cantilever

quality factor using piezoelectric shunt control

Rev. Sci. Instrum. 84, 053706 (2013) (PDF File)

 

2012

1

Vasily Cherepanov, Peter Coenen, and Bert Voigtlander

A nanopositioner for scanning probe microscopy: The KoalaDrive

Rev. Sci. Instrum. 83, 023703 (2012) (PDF FIle)

2010

1

Ireneusz Morawski, Józef Blicharski, and Bert Voigtländer

Voltage preamplifier for extensional quartz sensors used in scanning force microscopy

Rev. Sci. Instrum. 82, 063701 (2011) (PDF File)

2

The effect of set point ratio and surface Young’s modulus on maximum tapping forces in fluid tapping mode atomic force microscopy

Bharath Kumar, Phillip M. Pifer, Anthony Giovengo, and Justin Legleiter

J. Appl. Phys. 107, 044508 (2010) (PDF File)

3

Operation of Self-Sensitive Cantilever in Liquid for Multiprobe Manipulation

Futoshi Iwata, Yuya Mizuguchi, Kousuke Ozawa, and Tatuo Ushiki1

Japanese Journal of Applied Physics 49: 08LB14 (2010) (PDF File)

4

Quantitative scanning probe microscope topographies by charge linearization of the vertical actuator

Andrew J. Fleming

Rev. Sci. Instrum. 81, 103701 (5 pp) (2010) (PDF File)

5

Image force microscopy of molecular resonance: A microscope principle

I. Rajapaksa, K. Uenal, and H. Kumar Wickramasinghe

Appl. Phys. Lett. 97, 073121 (3 pp) (2010) (PDF File)

6

Note: Multiscale scanning probe microscopy

L. Chassagne, S. Blaize, P. Ruaux, S. Topcu, P. Royer, Y. Alayli, and G. Lerondel

Rev, Sci, Instrum. 81, 086101 (3 pp) (2010) (PDF File)

8

Digitally tunable, wide-band amplitude, phase, and frequency detection for atomic-resolution scanning force microscopy

Z. Khan, C. Leung, B. A. Tahir, and B. W. Hoogenboom

Rev. Sci. Instrum. 81, 073704 (2010) (PDF File)

9

Coaxial atomic force microscope tweezers

K. A. Brown, J. A. Aguilar,a and R. M. Westervelt

Appl. Phys. Lett. 96, 123109 (3 pp) (2010). (PDF File)

 

2009

1

Ultrastable combined atomic force and total internal fluorescence microscope

H. Gumpp, S. W. Stahl, M. Strackharn, E. M. Puchner, and H. E. Gaub

Rev. Sci. Instrum. 80, 063704 (2009) (PDF File)

2

Athermalization in atomic force microscope based force spectroscopy using matched microstructure coupling

H. Torun, O. Finkler, and F. L. Degertekin

Rev. Sci. Instrum. 80, 076103 (2009) (PDF file)

3

The effect of drive frequency and set point amplitude on tapping forces in atomic force microscopy: simulation and experiment

Justin Legleiter

Nanotechnology 20: 245703 (10pp) (2009) (PDF File)

 

2008

1

Protein-Protein Interactions in Reversibly Assembled Nanopatterns

Tomas Rakickas, Martynas Gavutis, Annett Reichel, Jacob Piehler, Bo Liedberg, and Ramunas Valiokas

Nano Letters 8:3369-3375 (2008) (PDF file)

2

Nanometer-Scale Manipulation and Ultrasonic Cutting Using an Atomic Force Microscope Controlled by a Haptic Device as a Human Interface

Futoshi IWATA, Kouhei OHARA, Yuichi ISHIZU, Akira SASAKI, Hisayuki AOYAMA, and Tatsuo USHIKI

Japanese Journal of Applied Physics 47(7): 6181-6185 (2008) (PDF File)

3

Simultaneous sensing and actuation with a piezoelectric tube scanner

S. O. Reza Moheimani and Yuen K. Yong

Rev. Sci. Instrum. 79, 073702 (2008) (PDF File)

 

2007

1

Image procesing for resonance frequency mapping in atomic force modulation microscopy

R. Arinero, G. Leveque, P. Girard, and J.Y. Ferrandis

Rev. Sci. Instrum. 78:023703 (6 pp.) (2007) (PDF file)

2

Efficient electrothermal actuation of multiple modes of high-frequency nanoelectromechanical resonators

I. Bargatin, I. Kozinsky and M.L. Roukes

Appl. Phys. Lett.. 90:093116 (3 pp.) (2007) (PDF file)

3

200 femtometer sensitivity for near-field analysis of surface acoustic waves in a scanning electron/scanning probe microscope hybrid system

Ch. Thomas, R. Heiderhoff, and L.J. Balk

Appl.Phys. Lett. 90:144106-1-3 (2007) (PDF file)

4

Weighing of biomolecules, single cells and single nanoparticles in fluid

Thomas P. Burg, Michel Godin, Scott M. Knudsen, Wenjiang Shen, Freg Carison, John S. Foster, Ken Babcock, and Scott R. Manalis

Nature 446:1066-1069 (2007) (PDF file)

2006

1

Feedback control and characterization of a microcantilever using optical radiation pressure

David M. Weld, and Aharon Kapitulnik

Appl. Phys. Lett. 89:164102-1-3 (2006) (PDF file)

2

Photothermal excitation of microcantilevers in liquids

D. Ramos, J. Tamayo, J. Mertens, and M. Calleja

J. Appl.Phys. 99:124904-1-8 (2006) (PDF file)

3

Increasing the Q factor in the constant-excitation mode of frequency-modulation atomic force microscopy in liquid

D. Ebeling, H. Holscher, and B. Anczykowski

Appl.Phys. Lett.  89:203511-1-3 (2006) (PDF file) 

4  
5  

22  2005

1

Optical actuation of a macroscopic mechanical oscillator

O. Hahtela, and I. Tittonen

Appl. Phys. B. 81:589-596 (2005) (PDF file)

2

Nanoscale imaging of buried structures vis scanning near-field ultrasound Holography

Gajendra S. Shekhawat and Vinayak P. Dravid

Science 310:589-596 (2005) (PDF file)

3  
4

Fabrication and laser control of double-paddle silicon oscillators

L. Haiberger, D. Jager, and S. Sciller

Rev. Sci. Instrum. 76:0456106-1-6 (2005) (PDF file)

5

A fluid cell with integrated acoustic radiation pressure actuator for atomic force microscopy

A. G. Onaran and F. L. Degertekin

Rev. Sci. Instrum. 76:103704(6 pp) (2005) (PDF file)

     

      2004

1

Improving the sensitivity if frequency modulation spectroscopy using nanomechanical cantilevers

B.M. Chernobrod, G.P. Berman, and P.W. Milonni

Appl/ Phys. Lett. 85(17):3896-3898 (2004) (PDF file)

2  

     2003

     

     2002

1

Knudsen forces on microcantilevers

A. Passian, A. Wig, F. Meriaudeau, T.L. Ferrell, and T. Thundat

J. Appl. Phys. 92(10):6326-6333 (2002) (PDF file)

2

Near-field ultrasonic imaging: A novel method for nondestrucive mechanical imaging of IC interconnect structures.

G.S. Shekhawat, H. Xiw, Y. Zhen and R.E. Geer

Mat. Res. Soc. Symp. Proc.  716:B11.14.1-6 (PDF file)

3

Tapping mode and elasticity imaging in liquids using an atomic force microscope actuated by acoustic radiation pressure.

A. Guclu Onaran and F. Levent Degertekint

Appl. Phys. Lett.  80(21):4063-4065 (2002) (PDF file) 

     Prior to 2002

1

Mechanical and thermal effects of laser irradiation on force microscope cantilevers

O. Marti, A. Ruf, M. Hipp, H. Bielefeldt, J. Colchero and J. Mlynek

Ultramicroscopy 42-44:345-350 (1992) (PDF file)

2

Actuation and characterization of atomic force microscope cantilevers in fluids by acoustic radiation pressure.

F. L. Degertekin, B. hadimioglu, T. Sulchek, and C. F. Quate

Appl. Phys. Lett. 78(11): 1628-161630 (2001) (PDF file)