Separating pairing from quantum phase coherence dynamics above the superconducting transition by femtosecond spectroscopy
arXiv:1404.2707 · doi:10.1038/srep05656
Abstract
In classical superconductors an energy gap and phase coherence appear simultaneously with pairing at the transition to the superconducting state. In high-temperature superconductors, the possibility that pairing and phase coherence are distinct and independent processes has led to intense experimental search of their separate manifestations, but so far without success. Using femtosecond spectroscopy methods we now show that it is possible to clearly separate fluctuation dynamics of the superconducting pairing amplitude from the phase relaxation above the critical transition temperature. Empirically establishing a close correspondence between the superfluid density measured by THz spectroscopy and superconducting optical pump-probe response over a wide region of temperature, we find that in differently doped Bi_{2}Sr_{2}CaCu_{2}O_{8+δ} crystals the pairing gap amplitude monotonically extends well beyond T_{c}, while the phase coherence shows a pronounced power-law divergence as T\rightarrow T_{c}, thus showing for the first time that phase coherence and gap formation are distinct processes which occur on different timescales.
References in corpus (3)
- Controlled vaporization of the superconducting condensate in cuprate superconductors sheds light on the pairing boson
- Direct observation of the coexistence of pseudogap and superconducting quasi-particles in Bi2212 by time-resolved optical spectroscopy
- Incoherent topological defect recombination dynamics in TbTe_3
Cited by in corpus (4)
- Ultrafast carrier localisation in the pseudogap state of cuprate superconductors from coherent quench experiments
- Emergent ultrafast phenomena in correlated oxides and heterostructures
- Superconducting properties and pseudogap from preformed Cooper pairs in the triclinic (CaFePtAs)PtAs
- Dynamics of the superconducting order parameter through ultrafast normal-to-superconducting phase transition in BiSrCaCuO from multi-pulse polarization-resolved transient optical reflectivity