High magnetic field ultrasound study of spin freezing in LaSrCuO
arXiv:2011.00562 · doi:10.1103/PhysRevB.103.115133
Abstract
High- cuprate superconductors host spin, charge and lattice instabilities. In particular, in the antiferromagnetic glass phase, over a large doping range, lanthanum based cuprates display a glass-like spin freezing with antiferromagnetic correlations. Previously, sound velocity anomalies in LaSrCuO (LSCO) for hole doping were reported and interpreted as arising from a coupling of the lattice to the magnetic glass [Frachet, Vinograd et al., Nat. Phys. 16, 1064-1068 (2020)]. Here we report both sound velocity and attenuation in LSCO , i.e. at a doping level for which the spin freezing temperature is the highest. Using high magnetic fields and comparing with nuclear magnetic resonance (NMR) measurements, we confirm that the anomalies in the low temperature ultrasound properties of LSCO are produced by a coupling between the lattice and the spin glass. Moreover, we show that both sound velocity and attenuation can be simultaneously accounted for by a simple phenomenological model originally developed for canonical spin glasses. Our results point towards a strong competition between superconductivity and spin freezing, tuned by the magnetic field. A comparison of different acoustic modes suggests that the slow spin fluctuations have a nematic character.
12 pages, 8 figures
References in corpus (11)
- Charge density wave fluctuations in La2-xSrxCuO4 and their competition with superconductivity
- Tuning competing orders in La2-xSrxCuO4 cuprate superconductors by the application of an external magnetic field
- Rotated stripe order and its competition with superconductivity in LaSrCuO
- Similar glassy features in the NMR response of pure and disordered La1.88Sr0.12CuO4
- Dynamical Properties of Charged Stripes in La_{2-x}Sr_xCuO_4
- Magnetic-field-induced spin excitations and renormalized spin gap of the underdoped superconductor LaSrCuO
- Spin density wave induced disordering of the vortex lattice in superconducting LaSrCuO
- Bulk charge stripe order competing with superconductivity in La2-xSrxCuO4 (x=0.12)
- Low-energy spin dynamics and critical hole concentrations in LaSrCuO () revealed by La and Cu nuclear magnetic resonance
- Link between magnetism and resistivity upturn in cuprates: a thermal conductivity study of LaSrCuO
- Disentangling Intertwined Quantum States in a Prototypical Cuprate Superconductor
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