An underdog story: Re-emergence of a polar instability at high pressure in KNbO3

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Hauptverfasser: Shoker, Mohamad Baker, Ramakrishnan, Sitaram, Croes, Boris, Cregut, Olivier, Beyer, Nicolas, Dorkenoo, Kokou, Rodière, Pierre, Wehinger, Björn, Garbarino, Gaston, Mezouar, Mohamed, Verseils, Marine, Fertey, Pierre, Cherifi-Hertel, Salia, Bouvier, Pierre, Guennou, Mael
Format: Preprint
Veröffentlicht: 2025
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author Shoker, Mohamad Baker
Ramakrishnan, Sitaram
Croes, Boris
Cregut, Olivier
Beyer, Nicolas
Dorkenoo, Kokou
Rodière, Pierre
Wehinger, Björn
Garbarino, Gaston
Mezouar, Mohamed
Verseils, Marine
Fertey, Pierre
Cherifi-Hertel, Salia
Bouvier, Pierre
Guennou, Mael
author_facet Shoker, Mohamad Baker
Ramakrishnan, Sitaram
Croes, Boris
Cregut, Olivier
Beyer, Nicolas
Dorkenoo, Kokou
Rodière, Pierre
Wehinger, Björn
Garbarino, Gaston
Mezouar, Mohamed
Verseils, Marine
Fertey, Pierre
Cherifi-Hertel, Salia
Bouvier, Pierre
Guennou, Mael
contents Ferroelectricity in perovskites is known to be suppressed by a moderate hydrostatic pressure. The notion that a polar instability should reappear in a higher pressure regime is well accepted theoretically but experiments have failed so far to provide a conclusive evidence for it. Here, we investigate a classical but comparatively underlooked ferroelectric perovskite KNbO3. We use single crystal X-ray diffraction, infrared and Raman spectroscopy and second-harmonic generation to explore the phase transition sequence at high pressures up to 63 GPa. We show that the ferroelectric instability manifests itself in the emergence of an incommensurate modulation of the perovskite structure that combines cation displacements and tilts of the oxygen octahedra. Soft modes associated to the tilts and the modulation are clearly observed along with persistent order-disorder signatures. This demonstrates the presence of the high-pressure polar instability in a lead-free perovskite in spite of the centrosymmetric character of all observed high-pressure phases.
format Preprint
id arxiv_https___arxiv_org_abs_2508_06399
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle An underdog story: Re-emergence of a polar instability at high pressure in KNbO3
Shoker, Mohamad Baker
Ramakrishnan, Sitaram
Croes, Boris
Cregut, Olivier
Beyer, Nicolas
Dorkenoo, Kokou
Rodière, Pierre
Wehinger, Björn
Garbarino, Gaston
Mezouar, Mohamed
Verseils, Marine
Fertey, Pierre
Cherifi-Hertel, Salia
Bouvier, Pierre
Guennou, Mael
Materials Science
Ferroelectricity in perovskites is known to be suppressed by a moderate hydrostatic pressure. The notion that a polar instability should reappear in a higher pressure regime is well accepted theoretically but experiments have failed so far to provide a conclusive evidence for it. Here, we investigate a classical but comparatively underlooked ferroelectric perovskite KNbO3. We use single crystal X-ray diffraction, infrared and Raman spectroscopy and second-harmonic generation to explore the phase transition sequence at high pressures up to 63 GPa. We show that the ferroelectric instability manifests itself in the emergence of an incommensurate modulation of the perovskite structure that combines cation displacements and tilts of the oxygen octahedra. Soft modes associated to the tilts and the modulation are clearly observed along with persistent order-disorder signatures. This demonstrates the presence of the high-pressure polar instability in a lead-free perovskite in spite of the centrosymmetric character of all observed high-pressure phases.
title An underdog story: Re-emergence of a polar instability at high pressure in KNbO3
topic Materials Science
url https://arxiv.org/abs/2508.06399