IP Library › Granted Patent US 8,950,010
Granted Patent B2
US 8,950,010 · App. 13/060,858 · Granted Feb 3, 2015

Method for measuring a piezoelectric response by means of a scanning probe microscope

Inventor: Jörg Rychen (Zürich, CH)
Assignee: Specs Zürich GmbH
G01Q60/32B82Y35/00G01Q10/065
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Quick Facts
Patent No.
US 8,950,010
App. No.
13/060,858
Granted
Feb 3, 2015
Kind
B2
Abstract

The piezoelectric response of a sample ( 3 ) is measured by applying a scanning probe microscope, whose probe ( 2 ) is in contact with the sample ( 3 ). The probe is mounted to a cantilever ( 1 ) and an actuator ( 5 ) is driven by a feedback loop ( 7, 11, 12, 4 ) to oscillate at a resonance frequency f. An AC voltage with principally the same frequency f but with a phase (with respect to the oscillation) and/or amplitude varying periodically with a frequency fmod is applied to the probe for generating a piezoelectric response of the sample ( 3 ). A lock-in detector ( 20 ) measures the spectral components at the frequency fmod of the control signals (K, f) of the feedback loop. These components describe the piezoelectric response and can be recorded as output signals of the device. The method allows a reliable operation of the detector oscillator resonator ( 1 ) at its resonance frequency and provides a high sensitivity.

Claims (11)

1. A method for measuring a piezoelectric response of a sample by means of a scanning probe microscope, wherein said scanning probe microscope comprises a probe on a mechanical resonator, and an actuator for applying a mechanical force to said mechanical resonator,

said method comprising the steps of:

applying an AC-voltage U AC in order to generate an alternating electric field in said sample and thereby to generate the piezoelectric response of said sample, which piezoelectric response exerts a first oscillating force to said resonator through said probe;

applying, by means of said actuator, a second oscillating force, in addition to said first oscillating force, to said resonator, wherein said second oscillating force has a frequency corresponding to a resonance frequency f of said resonator, thereby causing said resonator to perform a resonant oscillation; and

deriving said piezoelectric response from an influence of said applied AC-voltage on said resonant oscillation,

wherein said AC-voltage has a frequency equal to said resonance frequency f and a constant phase shift φ in respect to a motion of said resonator.

2. The method of claim 1 , wherein said scanning probe microscope is operated in contact mode with said probe in continuous mechanical contact with said sample.

3. The method of claim 1 , wherein said AC-voltage U AC is applied between said probe and said sample.

4. The method of claim 1 , wherein a constant DC-voltage U DC is added to said AC-voltage U AC .

5. The method of claim 1 , wherein said probe is oscillating at said resonance frequency in a direction having a non-zero component parallel to a surface of said sample for measuring a piezoelectric response causing a deformation of said sample parallel to said surface and/or

wherein said probe is oscillating at said resonance frequency in a direction having a non-zero component perpendicular to a surface of said sample for measuring a piezoelectric response causing a deformation of said sample perpendicularly to said surface.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE INVENTOR'S FIRST NAME PREVIOUSLY RECORDED ON REEL 026631 FRAME 0642. ASSIGNOR(S) HEREBY CONFIRMS THE ANDREAS RYCHEN SHOULD BE JORG RYCHEN. Recorded Aug 29, 2011
From: RYCHEN, JORG
To: SPECS ZURICH GMBH
Reel/Frame 026819/0741 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2011
From: RYCHEN, ANDREAS
To: SPECS ZURICH GMBH
Reel/Frame 026631/0642 →
Continuity (1)
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