首页> 外文期刊>Journal of Materiomics >Soft phonon modes and diffuse scattering in Pb(In1/2Nb1/2)O3-Pb(Mg1/3Nb2/3)O3-PbTiO3 relaxor ferroelectrics
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Soft phonon modes and diffuse scattering in Pb(In1/2Nb1/2)O3-Pb(Mg1/3Nb2/3)O3-PbTiO3 relaxor ferroelectrics

机译:Pb(In1 / 2Nb1 / 2)O3-Pb(Mg1 / 3Nb2 / 3)O3-PbTiO3弛豫铁电体中的软声子模和扩散散射

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0.29Pb(In_(1/2)Nb_(1/2))O_(3)-0.45Pb(Mg_(1/3)Nb_(2/3))O_(3)-0.26PbTiO_(3) single crystals have been studied using triple-axis based elastic and inelastic neutron scattering. Elastic diffuse scattering reveals the presence of polar nano-regions (PNR's) in this system, which emerge at the Burns temperature ( T _(B) ~630?K) and then grow continuously in population and correlation size down to 100?K. At 300?K, characteristic “butterfly” and ellipsoid shaped diffuse scattering patterns are observed in the HK0 scattering plane. Electrical poling along the [110] direction produces a marked asymmetry in the diffuse scattering patterns, with the parallel-to-the-field components enhanced while the perpendicular-to-the-field components suppressed. Several low-energy phonon branches along the [100] and [110] directions have been measured. Most significantly, the PNR-acoustic phonon coupling is confirmed for the [110] transverse acoustic (TA) phonons polarized along the [1-10] real space direction and the [100] TA phonons. This coupling appears to be anisotropic and correlated with the PNRs' distribution, and also affected by the relative length scales of the PNRs and phonon wave vectors. The well-known “waterfall” phenomenon is observed on the [100] and [110] transverse optical (TO) branches, near the zone center. The optical phonons exhibit a lowest-energy, zone center soft TO mode, whose squared energy increases linearly with decreasing temperature below T _(B).
机译:0.29Pb(In_(1/2)Nb_(1/2))O_(3)-0.45Pb(Mg_(1/3)Nb_(2/3))O_(3)-0.26PbTiO_(3)单晶具有使用基于三轴的弹性和非弹性中子散射进行了研究。弹性弥散散射揭示了该系统中存在极性纳米区域(PNR),该区域在伯恩斯温度(T _(B)〜630?K)出现,然后在种群中不断增长,相关大小降至100?K。在300 K时,在HK0散射平面上观察到特征性的“蝴蝶”形和椭圆形的漫散射图案。沿[110]方向的电极化在漫散射图样中产生明显的不对称性,增强了平行于场的分量,而抑制了垂直于场的分量。已经测量了沿[100]和[110]方向的几个低能声子分支。最重要的是,确认了沿[1-10]实际空间方向和[100] TA声子极化的[110]横向声(TA)声子的PNR-声子耦合。这种耦合似乎是各向异性的,并且与PNR的分布相关,并且还受到PNR和声子波矢量的相对长度尺度的影响。在区域中心附近的[100]和[110]横向光学(TO)分支上观察到众所周知的“瀑布”现象。光学声子具有最低能量的区域中心软TO模式,其平方能量随温度降低到T _(B)以下而线性增加。

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