Dynamic Response of Glassy Dispersions in a Nematic Liquid Crystal
We present the first systematic measurements of the dynamic response of a glassy soft-solid formed on dispersing colloids in a thermotropic nematic liquid crystal. Through applying a simple theoretical model, we reveal that the nematic elasticity dominates at low frequencies (longest timescales) and prevents flow. The Ericksen number $E_R$, determines a critical frequency $ω_c$, above which the viscous component $G'' \propto ω^{1/2}$. We find that the value of tan$δ$ is independent of the colloidal volume fraction ($ϕ$), and is determined by the ratio of lengthscales associated with the defect-line density and the size of colloid-free nematic regions trapped within the composite.