高温铜氧化物超导体中声子掺杂演化的理论研究

Saheli Sarkar
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摘要

掺杂空穴的高温氧化铜基超导体(铜酸盐)显示出复杂的相图,在低温下会出现电荷密度波(CDW)和超导性(SC)等电子阶。由于其复杂的相互作用和相关性,这些电子阶的起源仍是未解之谜。这些电子阶可以改变系统中的声子,在几种铜氧化物中的实验也发现了这一点,即在 CDW 向量处声子频率的软化。最近的实验发现,随着空穴掺杂量的增加,铜氧化物中因 CDW 而产生的声子软化现象表现出了耐人寻味的行为。空穴掺杂也会改变底层费米面。因此,一个有趣的问题是,掺杂引起的费米面变化是否会影响声子软化,进而揭示系统中存在的电子秩序的性质。在这项研究中,我们利用早先开发的微扰方法研究了存在 CDW 和 SC 时的声子软化现象,从而探讨了这个问题。我们将工作模型中获得的结果与一些实验进行了比较。
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A Theoretical Study of Doping Evolution of Phonons in High-Temperature Cuprate Superconductors
Hole-doped high-temperature copper oxide-based superconductors (cuprates) exhibit complex phase diagrams where electronic orders like a charge density wave (CDW) and superconductivity (SC) appear at low temperatures. The origins of these electronic orders are still open questions due to their complex interplay and correlated nature. These electronic orders can modify the phonons in the system, which has also been experimentally found in several cuprates as a softening in the phonon frequency at the CDW vector. Recent experiments have revealed that the softening in phonons in cuprates due to CDW shows intriguing behavior with increasing hole doping. Hole doping can also change the underlying Fermi surface. Therefore, it is an interesting question whether the doping-induced change in the Fermi surface can affect the softening of phonons, which in turn can reveal the nature of the electronic orders present in the system. In this work, we investigate this question by studying the softening of phonons in the presence of CDW and SC within a perturbative approach developed in an earlier work. We compare the results obtained within the working model to some experiments.
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