Phase Fluctuations and the Absence of Topological Defects in Photo-excited Charge Ordered Nickelate
arXiv:1205.5609 · doi:10.1038/ncomms1837
Abstract
The dynamics of an order parameter's amplitude and phase determines the collective behaviour of novel states emerged in complex materials. Time- and momentum-resolved pump-probe spectroscopy, by virtue of its ability to measure material properties at atomic and electronic time scales and create excited states not accessible by the conventional means can decouple entangled degrees of freedom by visualizing their corresponding dynamics in the time domain. Here, combining time-resolved femotosecond optical and resonant x-ray diffraction measurements on striped La1.75Sr0.25NiO4, we reveal unforeseen photo-induced phase fluctuations of the charge order parameter. Such fluctuations preserve long-range order without creating topological defects, unlike thermal phase fluctuations near the critical temperature in equilibrium10. Importantly, relaxation of the phase fluctuations are found to be an order of magnitude slower than that of the order parameter's amplitude fluctuations, and thus limit charge order recovery. This discovery of new aspect to phase fluctuation provides more holistic view for the importance of phase in ordering phenomena of quantum matter.
23 pages, 6 figures. Published version can be found at Nature Communications 3, 838 (2012)
References in corpus (1)
Cited by in corpus (22)
- Nonthermal pathways to ultrafast control in quantum materials
- Melting of Charge Stripes in Vibrationally Driven La1.875Ba0.125CuO4: Assessing the Respective Roles of Electronic and Lattice Order in Frustrated Superconductors
- Probing light-driven quantum materials with ultrafast resonant inelastic X-ray scattering
- Ultrafast X-ray imaging of the light-induced phase transition in VO2
- Producing Coherent Excitations in Pumped Mott Antiferromagnetic Insulators
- Theory for Time-Resolved Resonant Inelastic X-ray Scattering
- Incoherent topological defect recombination dynamics in TbTe_3
- Ultrafast Dynamics of Bilayer and Trilayer Nickelate Superconductors
- Time-resolved resonant elastic soft X-ray scattering at Pohang Accelerator Laboratory X-ray Free Electron Laser
- Evidence for photoinduced sliding of the charge-order condensate in LaBaCuO
- Field theory for the dynamics of the open model
- Ultrafast surface melting of orbital order in La0.5Sr1.5MnO4
- Ultrafast excitation and topological soliton formation in incommensurate charge density wave states
- Evidence for bootstrap percolation dynamics in a photo-induced phase transition
- Photoinduced Transient States of Antiferromagnetic Orderings in LaSrFeO and SrFeO Thin Films Observed through Time-resolved Resonant Soft X-ray Scattering
- Bidirectional ultrafast control of charge density waves via phase competition
- Model of Nonadiabatic to Adiabatic Dynamical Quantum Phase Transition in Photoexcited Systems
- Ultrafast optical melting of trimer superstructure in layered 1T'-TaTe2
- Orbital-selective time-domain signature of nematicity dynamics in the charge-density-wave phase of LaEuSrCuO
- Using magnetic dynamics to measure the spin gap in a candidate Kitaev material
- Inverse Melting of an Electronic Liquid Crystal
- Coherent X-ray Imaging of Stochastic Dynamics