Publication | Open Access
Streaking Temporal Double-Slit Interference by an Orthogonal Two-Color Laser Field
132
Citations
31
References
2015
Year
PhotonicsQuantum ScienceQuantum OpticEngineeringLaser CyclePhysicsOptical PropertiesRelativistic Laser-matter InteractionLaser-plasma InteractionLaser ApplicationsAtomic PhysicsWave InterferenceTemporal Double-slit InterferenceElectron Momentum DistributionSingle IonizationSynchrotron RadiationElectron Optic
We investigate electron momentum distributions from single ionization of Ar by two orthogonally polarized laser pulses of different color. The two-color scheme is used to experimentally control the interference between electron wave packets released at different times within one laser cycle. This intracycle interference pattern is typically hard to resolve in an experiment. With the two-color control scheme, these features become the dominant contribution to the electron momentum distribution. Furthermore, the second color can be used for streaking of the otherwise interfering wave packets establishing a which-way marker. Our investigation shows that the visibility of the interference fringes depends on the degree of the which-way information determined by the controllable phase between the two pulses.
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