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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Evidence for Goldstone-like and Higgs-like structural modes in the model PbMg_(1/3)Nb_(2/3)O_3 relaxor ferroelectric
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Evidence for Goldstone-like and Higgs-like structural modes in the model PbMg_(1/3)Nb_(2/3)O_3 relaxor ferroelectric

机译:PBMG_(1/3)NB_(2/3)O_3松弛剂铁电器的验证和镀金的类似镀金和HIGGS的结构模式的证据

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摘要

Effective Hamiltonian simulations are conducted to unveil the nature of the low-frequency polar modes in the prototype relaxor ferroelectric, Pb(Mg_(1/3)Nb_(2/3))O_3. Above the so-called T* temperature, only a single soft-mode exists, with its frequency increasing under heating. On the other hand, for temperatures lower than the freezing temperature, this single soft-mode splits into two modes, with one mode slightly changing its low resonant frequency while the other exhibiting a resonant frequency sharply increasing under cooling, in agreement with previous measurements. More importantly, we present evidences that these two modes can be regarded as Goldstone-like and Higgs-like modes, inherent to the Mexican-hat-form of the atomic displacement potential we also reveal here, therefore extending the types of systems exhibiting Higgs-boson characteristics to relaxor ferroelectrics.
机译:有效的汉密尔顿模拟进行了揭示了原型松弛铁电,PB(MG_(1/3)NB_(2/3))O_3中的低频极性模式的性质。在所谓的T *温度之上,仅存在单个软模式,其频率在加热下增加。另一方面,对于低于冷冻温度的温度,这种单一的软模式分成两种模式,一个模式略微改变其低谐振频率,而另一个模式在冷却下呈现出谐振频率急剧增加,同时与先前的测量相一致。更重要的是,我们现在的证据表明这两种模式可以被视为金石状和希格斯的类似模式,墨西哥帽子形式的原子位移潜力所固有的,我们还揭示了这里,因此延长了表现出Higgs的系统类型 - 玻色子特性放松铁电气。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第10期|104110.1-104110.6|共6页
  • 作者单位

    Physics Department and Institute for Nanoscience and Engineering University of Arkansas Fayetteville Arkansas 72701 USA;

    Physics Department and Institute for Nanoscience and Engineering University of Arkansas Fayetteville Arkansas 72701 USA;

    Physics Department and Institute for Nanoscience and Engineering University of Arkansas Fayetteville Arkansas 72701 USA;

    Physics Department Jamoum University College Umm Al-Qura University Makkah Makkah 21955 Saudi Arabia;

    Physics Department and Institute for Nanoscience and Engineering University of Arkansas Fayetteville Arkansas 72701 USA;

    Laboratoire Structures Proprietes el Modelisation des Solides CentraleSupelec Universite Paris-Saclay CNRS-UMR8580 91190 Gif-sur-Yvette France;

    School of Microelectronics & State Key Laboratory for Mechanical Behavior of Materials Xi'an Jiaotong University Xi'an 710049 China;

    Department of Chemistry and 4D LABS Simon Fraser University 8888 University Drive Burnaby British Columbia V5A 1S6 Canada;

    Department of Chemistry and 4D LABS Simon Fraser University 8888 University Drive Burnaby British Columbia V5A 1S6 Canada;

    Laboratoire Structures Proprietes el Modelisation des Solides CentraleSupelec Universite Paris-Saclay CNRS-UMR8580 91190 Gif-sur-Yvette France;

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