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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Polaron crystallization and melting: Effects of the long-range Coulomb forces
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Polaron crystallization and melting: Effects of the long-range Coulomb forces

机译:极化子结晶和熔化:远程库仑力的影响

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On examining the stability of a Wigner crystal in an ionic dielectric, two competitive effects due to the polaron formation are found to be important: (i) the screening of the Coulomb force 1/epsilon(s)r, which destabilizes the crystal, compensated by (ii) the increase of the carrier mass (polaron mass). The competition between the two effects is carefully studied, and the quantum melting of the polaronic Wigner crystal is examined by varying the density at zero temperature. By calculating the quantum fluctuations of both the electron and the polarization, we show that there is a competition between the dissociation of the polarons at the insulator-to-metal transition (IMT), and a melting towards a polaron liquid. We find that at strong coupling, a liquid state of dielectric polarons cannot exist, and the IMT is driven by the polaron dissociation. Next, taking into account the dipolar interactions between localized carriers, we show that these are responsible for an instability of the transverse vibrational modes of the polaronic Wigner crystal as the density increases. This provides a new mechanism for the IMT in doped dielectrics, which yields interesting dielectric properties below and beyond the transition. An optical signature of such a mechanism for the IMT is provided. [References: 35]
机译:在检查维格纳晶体在离子电介质中的稳定性时,发现由于极化子形成而产生的两个竞争效应很重要:(i)筛选使晶体不稳定的库仑力1 /εr受到补偿(ii)载流子质量(极化子质量)的增加。仔细研究了这两种效应之间的竞争,并通过改变零温度下的密度来检查极化电子Wigner晶体的量子熔化。通过计算电子和极化的量子涨落,我们表明在绝缘子到金属的转变(IMT)时极化子的解离与极化子液体的熔化之间存在竞争。我们发现,在强耦合下,介电极化子不会存在液态,而IMT受极化子离解的驱动。接下来,考虑到局部载流子之间的偶极相互作用,我们证明了这些随密度增加而导致极化电子Wigner晶体的横向振动模式的不稳定性。这为掺杂电介质中的IMT提供了一种新的机制,该机制可在跃迁以下和跃迁之外产生有趣的介电特性。提供了用于IMT的这种机制的光学签名。 [参考:35]

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