Effect of internal electric field on ferroelectric polarization in multiferroic TbMnO$_3$
Chandan De, Somnath Ghara, A. Sundaresan

TL;DR
This study reveals how internal electric fields, generated by thermally stimulated charge carriers, influence ferroelectric polarization measurements in TbMnO$_3$, highlighting the importance of considering internal fields for accurate characterization.
Contribution
It demonstrates the formation of internal electric fields due to thermally stimulated charge carriers and their impact on pyro-current measurements in multiferroic TbMnO$_3$, proposing a combined measurement approach.
Findings
Internal electric field affects pyro-current signals.
Poling in paraelectric state induces internal fields.
Combined measurement methods improve ferroelectric property analysis.
Abstract
Pyro-current measurements have been widely used to study ferroelectric properties in multiferroic materials. However, determination of intrinsic polarization by this method is not straightforward because of leakage current and trapped charge carriers. Here, we demonstrate the formation of internal electric field due to thermally stimulated charge carriers and its influence on ferroelectric polarization in a polycrystalline sample of the well known multiferroic TbMnO. While an electric field () poling across the ferroelectric transition ( 26 K) is essential to obtain depolarization current at , the sample poled only in the paraelectric state ( = 130 50 K) also exhibits a pyro-current peak at but with the same polarity ( ) as that of the external field ( ). We demonstrate that these unusual behavior of pyro-current…
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Taxonomy
TopicsMultiferroics and related materials · Ferroelectric and Piezoelectric Materials · Solid-state spectroscopy and crystallography
