Response to comment on "Broken translational and rotational symmetry via charge stripe order in underdoped YBa2Cu3O6+y"
arXiv:1602.01471 · doi:10.1126/science.aac4778
Abstract
Fine questions our interpretation of unidirectional-stripes over bidirectional-checkerboard, and illustrates his criticism by simulating a momentum space structure consistent with our data and corresponding to a checkerboard-looking real space density. Here we use a local rotational-symmetry analysis to demonstrate that the simulated image is in actuality composed of locally unidirectional modulations of the charge density, consistent with our original conclusions.
Response to original comment: B.V. Fine, Science 351, 235 (2016) (arxiv version at http://arxiv.org/abs/1602.00888)
References in corpus (5)
- Simultaneous Transitions in Cuprate Momentum-Space Topology and Electronic Symmetry Breaking
- Broken translational and rotational symmetry via charge stripe order in underdoped YBCO
- Atomic-scale Electronic Structure of the Cuprate d-Symmetry Form Factor Density Wave State
- From stripe to checkerboard order on the square lattice in the presence of quenched disorder
- Comment on "Broken translational and rotational symmetry via charge stripe order in underdoped YBa2Cu3O6+y"
Cited by in corpus (4)
- Frustrated charge density wave and quasi-long-range bond-orientational order in the magnetic kagome FeGe
- Pseudogap and Fermi surface in the presence of spin-vortex checkerboard for 1/8-doped lanthanum cuprates
- Spin excitation spectrum of high-temperature cuprate superconductors from finite cluster simulations
- Superconductivity model for a spin-vortex checkerboard