2019
DOI: 10.1016/j.sna.2019.03.041
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LiNbO3-based bimorph piezoactuator for fast X-ray experiments: Static and quasistatic modes

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Cited by 23 publications
(6 citation statements)
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“…2). Descriptions of the fastening design, functional characteristics and features of the piezoactuator usage in X-ray diffraction experiments are given elsewhere (Blagov et al, 2016(Blagov et al, , 2017Kulikov et al, 2019;Marchenkov et al, 2019). It was also used as a fasttunable adaptive element for in situ study of the external mechanical stress in crystals by X-ray diffraction in the experiment with time resolution (Eliovich et al, 2018).…”
Section: Sample and Methods Of Angular Measurementmentioning
confidence: 99%
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“…2). Descriptions of the fastening design, functional characteristics and features of the piezoactuator usage in X-ray diffraction experiments are given elsewhere (Blagov et al, 2016(Blagov et al, , 2017Kulikov et al, 2019;Marchenkov et al, 2019). It was also used as a fasttunable adaptive element for in situ study of the external mechanical stress in crystals by X-ray diffraction in the experiment with time resolution (Eliovich et al, 2018).…”
Section: Sample and Methods Of Angular Measurementmentioning
confidence: 99%
“…In view of this, a new technique for accurate DRC registration using a bending piezoactuator in the quasi-static operational mode, described in detail by Kulikov et al (2019), was used in this work. In this mode, the piezoactuator receives a low-frequency triangle control electrical signal (0.5 Hz in this experiment).…”
Section: Experimental Schemementioning
confidence: 99%
“…Quasi-static operating mode (Kulikov et al, 2019) is provided by a triangular low-frequency (less than 10 Hz) control signal. This mode simplifies data processing since the signal amplitude dependence on time is linear.…”
Section: Adaptive X-ray Optics and Time-resolved Studiesmentioning
confidence: 99%
“…[10] Such structures can be used, for example, as active elements of precise positioning piezoelectric actuators. [11,12] The diffusion coefficients of copper ions in LN are relatively high (e.g., 500 times higher compared to iron ions [13,14] ), and the required annealing temperatures are relatively low (up to 800°C [10] ), which makes this material an attractive diffuser. However, the changes of mechanical properties of diffusion-modified layers depending on the diffusion depth remain unexplored, although this knowledge is important, [15][16][17][18] in particular for the analysis of actuators.…”
Section: Doi: 101002/crat201900117mentioning
confidence: 99%
“…It has been recently shown that the single domain LN surfaces, which have an electrical charge of the same sign (in other words, spontaneous polarization vectors are anti‐parallel in these surfaces) can be bonded through the interdiffusion of copper film, deposited on one of the surfaces . Such structures can be used, for example, as active elements of precise positioning piezoelectric actuators . The diffusion coefficients of copper ions in LN are relatively high (e.g., 500 times higher compared to iron ions), and the required annealing temperatures are relatively low (up to 800 °C), which makes this material an attractive diffuser.…”
Section: Introductionmentioning
confidence: 99%