Published September 2001 | Version v1
Journal article

Neutron diffraction study of the irreversible R-MA-MC phase transition in single crystal Pb[(Zn1/3Nb2/3)1-xTix]O3

  • 1. Tokyo Univ., Neutron Scattering Laboratory, Tokai, Ibaraki (Japan)
  • 2. Tohoku Univ., Sendai (Japan). Dept. of Physics
  • 3. Pennsylvania State Univ., Materials Research Laboratory, PA (United States)
  • 4. NIST, NIST Center for Neutron Research, Gaithersburg, MD (United States)
  • 5. Brookhaven National Laboratory, Department of Physics, Upton, NY (United States)
  • 6. Fraunhofer-IBMT Technology Center Hialeah, Hialeah, FL (United States)

Description

Single crystals of the relaxor PZN-xPT display an enormously strong piezoelectric character. Recent x-ray scattering studies have revealed novel electric-field induced phase transitions in PZN-8%PT. As-grown crystals exhibit a rhombohedral structure that, under application of an electric field oriented along [001], transforms into a monoclinic (MA) phase, and then irreversibly to another monoclinic (MC) phase with increasing field strength. Since the latter phase change is very unusual, its transition sequence has been investigated by using triple-axis neutron scattering techniques so that the 'skin effect' observed by x-ray scattering can be avoided, and the entire crystal bulk is probed. Contour maps of the elastic scattering have been mapped out in each phase in the (H0L) zone with high q-resolution. Increasing the field strength within the MC phase induces a sharp c-axis jump around 15 kV/cm. This jump was observed easily with x-rays in previous studies, but it was not observed in 5 different crystals examined with neutrons. A subsequent high-energy x-ray study of the same crystals showed that the c-axis jump is distributed within the crystal volume, thereby washing out the jump. The observed R-MA-MC transformational path is in perfect accord with very recent first principles calculations by Bellaiche, Garcia, and Vanderbilt in the PZT system. (author)

Additional details

Publishing Information

Journal Title
Journal of the Physical Society of Japan
Journal Volume
70
Journal Issue
9
Journal Page Range
p. 2778-2783
ISSN
0031-9015

Optional Information

Notes
16 refs., 6 figs.