arXiv · 2008.00145
Muon Spin Relaxation and fluctuating magnetism in the pseudogap phase of YBa$_{2}$Cu$_{3}$O$_{y}$
Abstract
We report results of a muon spin relaxation study of slow magnetic fluctuations in the pseudogap phase of underdoped single-crystalline YBa$_{2}$Cu$_{3}$O$_{y}$, $y = 6.77$ and 6.83. The dependence of the dynamic muon spin relaxation rate on applied magnetic field yields the rms magnitude~$B\mathrm{_{loc}^{rms}}$ and correlation time~$\tau_c$ of fluctuating local fields at muon sites. The observed relaxation rates do not decrease with decreasing temperature~$T$ below the pseudogap onset at $T^\ast$, as would be expected for a conventional magnetic transition; both $B\mathrm{_{loc}^{rms}}$ and $\tau_c$ are roughly constant in the pseudogap phase down to the superconducting transition. Corresponding NMR relaxation rates are estimated to be too small to be observable. Our results put strong constraints on theories of the anomalous pseudogap magnetism in YBa$_{2}$Cu$_{3}$O$_{y}$.
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Zihao Zhu, Jian Zhang, Zhaofeng Ding, Cheng Tan, Changsheng Chen, Qiong Wu, Yanxing Yang, Oscar O. Bernal, Pei-Chun Ho, Gerald D. Morris, Akihiro Koda, Adrian D. Hillier, Stephen P. Cottrell, Peter J. Baker, Pabitra K. Biswas, Jun Qian, Xin Yao, Douglas E. MacLaughlin, Lei Shu. 2020-08-01. Muon Spin Relaxation and fluctuating magnetism in the pseudogap phase of YBa$_{2}$Cu$_{3}$O$_{y}$. https://doi.org/10.1103/physrevb.103.134426
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