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  1. Wigen, P.E., Roukes, M.L., & Hammel, P.C., Ferromagnetic resonance force microscopy in Spin Dynamics in Confined Magnetic Structures Iii , Vol. 101, pp. 105-136, (2006).

  2. Roukes, M., Quantum physics - Observing and the observed. Nature 443, 154-155 (2006).

  3. Ekinci, K.L. & Roukes, M.L., Nanoelectromechanical systems. Review of Scientific Instruments 76 (2005).
  4. Ekinci, K.L., Yang, Y.T., & Roukes, M.L., Ultimate limits to inertial mass sensing based upon nanoelectromechanical systems. Journal of Applied Physics 95, 2682-2689 (2004).

  5. Worlock, J.M. & Roukes, M.L., Applied physics - Son et lumiere. Nature 421, 802-803 (2003).

  6. Hammel, P.C. et al., The magnetic-resonance force microscope: A new tool for high-resolution, 3-D, subsurface scanned probe imaging. Proceedings of the IEEE 91, 789-798 (2003).

  7. Buks, E. & Roukes, M.L., Quantum physics: Casimir force changes sign. Nature 419, 119-120 (2002).

  8. Wolf, S.A. et al., Spintronics: A spin-based electronics vision for the future. Science 294, 1488-1495 (2001).

  9. Roukes, M.L., Electronics in a spin. Nature 411, 747-748 (2001).

  10. Thornton, T.J., Roukes, M.L., Scherer, A., & Vandergaag, B.P., Microfabrication and Electron-Scattering in very Small Devices. Institute of Physics Conference Series, 861-868 (1990).

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