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The attosecond lighthouse is a method of using ultrafast wavefront rotation with high harmonic generation to create a series of spatially separated attosecond pulses.Previously, attosecond temporal measurements by photoelectron streaking have only been achieved for pulses created by manipulating the single atom response.Here, we present the temporal characteristics of spatially separated, isolated attosecond pulses by ultrafast wavefront rotation.The three most intense, main pulses are reconstructed using the Complete Reconstruction for Attosecond Burst algorithm.The reconstructed pulses are shown to be isolated in nature, each with a unique spectrum and attosecond chirp.The spatial separation allows for the individual delay and manipulation of the pulses for coherent attosecond pump-attosecond probe type experiments.