• DocumentCode
    2738246
  • Title

    Scanning Impedance Probe Microscope

  • Author

    Tanbakuchi, Hassan ; Han, Wenhai ; Richter, Matt

  • Author_Institution
    Agilent Technol., Edinburgh
  • fYear
    2008
  • fDate
    18-21 Aug. 2008
  • Firstpage
    218
  • Lastpage
    219
  • Abstract
    A new sensitive scanning impedance probe microscope (SIPM) that uses have a wavelength resonator with conjunction with a diplexer connected to a vector network analyzer (VNA), which can perform a very sensitive capacitance measurement at the tip of a conductive atomic force microscope is the subject of this invention. This is achieved through transformation of the high impedance (very small AFM tip capacitance between tip and sample to ground) to 50 Ohm (or any other system´s characteristic impedance) through a half a wavelength resonator and diplexer. The VNA measurement architecture as exists today has the capability of measuring impedances close to the characteristic impedance of the analyzer (i.e. 50 Ohms) to a good precision and up to 100 GHz stimulus frequency .The precision and resolution of the DUT (device under test) impedance markedly drops as it deviates from 50 ohms by a couple of order of magnitudes specially in the case of the capacitance between the AFM tip and sample to the ground. We are proposing a solution which remedies the lack of precision and resolution for large and small impedances (small capacitance) when measured by existing VNA.
  • Keywords
    atomic force microscopy; capacitance; electric impedance imaging; AFM tip capacitance; capacitance; conductive atomic force microscope; impedance; scanning impedance probe microscope; stimulus frequency; vector network analyzer; wavelength resonator; Atomic force microscopy; Atomic measurements; Capacitance measurement; Force measurement; Frequency measurement; Impedance measurement; Performance analysis; Performance evaluation; Probes; Wavelength measurement;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nanotechnology, 2008. NANO '08. 8th IEEE Conference on
  • Conference_Location
    Arlington, TX
  • Print_ISBN
    978-1-4244-2103-9
  • Electronic_ISBN
    978-1-4244-2104-6
  • Type

    conf

  • DOI
    10.1109/NANO.2008.71
  • Filename
    4617053