论文标题

通过电荷密度波在超导yba $ _2 $ _2 $ _3 $ o $ $ _ {6.67} $中表征诱导的正常状态。

Characterization of photoinduced normal state through charge density wave in superconducting YBa$_2$Cu$_3$O$_{6.67}$

论文作者

Jang, H., Song, S., Kihara, T., Liu, Y., Lee, S. -J., Park, S. -Y., Kim, M., Kim, H. -D., Coslovich, G., Nakata, S., Kubota, Y., Inoue, I., Tamasaku, K., Yabashi, M., Lee, H., Song, C., Nojiri, H., Keimer, B., Kao, C. -C., Lee, J. -S.

论文摘要

高-TC酸奶的正常状态被认为是高温超导性研究中的重要主题之一。但是,与对其的高磁场研究相比,了解光引起的正常状态仍然难以捉摸。在这里,我们通过充电密度波(CDW)探索YBA $ _2 $ _2 $ _2 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2,我们探索了YBA的正常状态,并通过充电密度波(CDW)探索,YBA $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2在非平衡状态下,人们根据先前的光谱镜预测淬灭的超导状态,我们在实验上观察到与在平衡状态中显示的超导性和CDW之间的竞争类似的类比。我们进一步观察到,超导CUO $ _2 $平面中的损坏的配对状态通过光泵带导致三维CDW前体相关性的成核,表明光诱导的CDW与磁场下显示的现象相似。最终,这些发现提供了一个关键的线索,即光诱导的正常状态的特征显示出与平衡条件下磁场下的特征相似之处。

The normal state of high-Tc cuprates has been considered one of the essential topics in high-temperature superconductivity research. However, compared to the high magnetic fields study of it, understanding a photoinduced normal state remains elusive. Here, we explore a photoinduced normal state of YBa$_2$Cu$_3$O$_{6.67}$ (YBCO) through a charge density wave (CDW) with time-resolved resonant soft x-ray scattering, as well as a high-magnetic field x-ray scattering. In the non-equilibrium state in which people predict a quenched superconducting state based on the previous optical spectroscopies, we experimentally observed a similar analogy to the competition between superconductivity and CDW shown in the equilibrium state. We further observe that the broken pairing states in the superconducting CuO$_2$ plane via the optical pump lead to nucleation of three-dimensional CDW precursor correlation, revealing that the photoinduced CDW is similar to phenomena shown under magnetic fields. Ultimately, these findings provide a critical clue that the characteristics of the photoinduced normal state show a solid resemblance to those under magnetic fields in equilibrium conditions.

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