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Electric Scanning Probe Imaging and Modification of Ferroelectric Surfaces |
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1 | (44) |
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SPM Imaging and Control of Ferroelectric Materials |
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1 | (2) |
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Non-contact Electrostatic Imaging of Ferroelectric Surfaces |
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3 | (8) |
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Contact Imaging and Polarization Dynamics |
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11 | (26) |
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Simultaneous Acquisition of PFM and Potential Images |
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37 | (2) |
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39 | (6) |
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Challenges in the Analysis of the Local Piezoelectric Response |
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45 | (42) |
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45 | (2) |
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Analysis of the First Harmonic Signal in Voltage Modulated SFM |
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47 | (4) |
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Calibration of the Piezoresponse Signal |
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51 | (2) |
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53 | (2) |
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Interpretation of the Piezoresponse Signal |
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55 | (11) |
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Electric Field in the Sample |
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66 | (11) |
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Influence of the Cantilever Elastic Properties and of the AC Probing Frequency on the Measurements |
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77 | (4) |
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81 | (6) |
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Electrical Characterization of Nanoscale Ferroelectric Structures |
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87 | (28) |
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87 | (1) |
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P(V) Curve and Characteristic Values |
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88 | (1) |
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Sample Preparation and Contacting |
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89 | (3) |
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Suitable Measurement Methods |
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92 | (6) |
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Measurement Results and Interpretation |
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98 | (10) |
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Application to Memory Structures |
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108 | (7) |
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Nanoscale Optical Probes of Ferroelectric Materials |
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115 | (28) |
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115 | (1) |
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Overview of Optical Microscopy |
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115 | (3) |
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History of Optical Probes of Ferroelectrics |
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118 | (2) |
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120 | (1) |
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Ferroelectric Physics from Optical Probes |
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121 | (4) |
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Confocal Scanning Optical Microscopy |
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125 | (8) |
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Near-Field Scanning Optical Microscopy |
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133 | (4) |
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137 | (6) |
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Scanning Nonlinear Dielectric Microscopy for Investigation of Ferroelectric Polarization |
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143 | (20) |
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143 | (1) |
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Principle and Theory for SNDM |
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144 | (5) |
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Higher Order Nonlinear Dielectric Microscopy |
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149 | (4) |
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Three-Dimensional Measurement Technique |
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153 | (2) |
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Tbit/inch2 Ferroelectric Data Storage Based on SNDM |
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155 | (6) |
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161 | (2) |
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Nanoscale Piezoelectric Phenomena in Epitaxial PZT Thin Films |
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163 | (30) |
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163 | (2) |
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Nonlinear Thermodynamic Theory |
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165 | (7) |
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What Happens in Small Confined Dimensions? (Piezoelectric Measurements On Nanoscale Islands) |
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172 | (17) |
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189 | (4) |
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Scanning Probe Microscopy of Ferroelectric Domains near Phase Transitions |
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193 | (28) |
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193 | (2) |
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Piezoresponse Scanning Force Microscopy |
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195 | (6) |
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Ferroelectric Domains near Phase Transitions |
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201 | (9) |
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Local Hysteresis Loops and Nanoscale Switching of Domains |
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210 | (8) |
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218 | (3) |
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Nanodomain Engineering in Ferroelectric Crystals Using High Voltage Atomic Force Microscopy |
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221 | (46) |
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221 | (8) |
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Nanodomain Reversal in Ferroelectric Crystals Using High Voltage Atomic Force Microscopy |
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229 | (17) |
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Piezoelectric Coefficient Measurements Using High Voltage Atomic Force Microscopy |
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246 | (4) |
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Nanodomain Characterization Using Scanning Probe Microscopy |
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250 | (11) |
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261 | (6) |
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Nanoinspection of Dielectric and Polarization Properties at Inner and Outer Interfaces in PZT Thin Films |
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267 | (12) |
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267 | (1) |
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268 | (2) |
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270 | (1) |
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271 | (5) |
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276 | (3) |
Index |
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279 | |