Goos-Hänchen and Imbert-Fedorov shifts for paraxial X-Waves
arXiv:1411.2376 · doi:10.1364/OL.40.000558
Abstract
We present a theoretical analysis for the \GH and \IF shifts experienced by an X-wave upon reflection from a dielectric interface. We show that the temporal chirp, as well as the bandwidth of the X-wave directly affect the spatial shifts in a way that can be experimentally observed, while the angular shifts do not depend on the spectral features of the X-Wave. A dependence of the spatial shifts on the spatial structure of the X-wave is also discussed.
References in corpus (9)
- Conservation of Angular Momentum, Transverse Shift, and Spin Hall Effect in Reflection and Refraction of Electromagnetic Wave Packet
- Goos-Hänchen and Imbert-Fedorov beam shifts: An overview
- Role of beam propagation in Goos-Hänchen and Imbert-Fedorov shifts
- Observation of Goos-Hänchen shifts in metallic reflection
- Polarization, transverse shifts, and angular momentum conservation laws in partial reflection and refraction of an electromagnetic wave packet
- Weak Measurements of Light Chirality with a Plasmonic Slit
- Goos-Hänchen and Imbert-Fedorov shifts of polarized vortex beams
- The analogy between optical beam shifts and quantum weak measurements
- Quantum electromagnetic X-waves