Reexamination of group velocities of structured light pulses
arXiv:1803.03188 · doi:10.1103/PhysRevA.97.063824
Abstract
Recently, a series of theoretical and experimental papers on free-space propagation of pulsed Laguerre-Gaussian and Bessel beams was published, which reached contradictory and controversial results about group velocities of such pulses. Depending on themeasurement scheme, the group velocity can be defined differently.We analyze how different versions of group velocity are related to the measurable travel time (time of flight) of the pulse between input (source) and output (detecting) planes. The analysis is tested on a theoretical model---the Bessel-Gauss pulse whose propagation path exhibits both subluminal and superluminal regions. Our main conclusion from resolving the contradictions in the literature is that different versions of group velocity are appropriate, depending on whether or not the beam is hollow and how the pulse is recorded in the output plane---integrally or with spatial resolution.
12 pages, 6 figures. Final version published in Phys. Rev. A
References in corpus (4)
Cited by in corpus (17)
- Classification of propagation-invariant space-time wave packets in free space: Theory and experiments
- Anomalous refraction of optical space-time wave packets
- What is the maximum differential group delay achievable by a space-time wave packet in free space?
- Accelerating and decelerating space-time optical wave packets in free space
- Broadband space-time wave packets propagating 70 m
- Free-space optical delay line using space-time wave packets
- Energy backflow in unidirectional spatiotemporally localized wavepackets
- Reexamination of energy flow velocities of non-diffracting localized waves
- Omni-resonant space-time wave packets
- V-Waves: Spatio-temporally induced group-velocity dispersion in free space
- Relativistic quantum-mechanical description of twisted paraxial electron and photon beams
- Reactive energy in non-diffracting localized waves
- Axial spectral encoding of space-time wave packets
- Majorana states for subluminal structured photons
- Refraction of space-time wave packets: I. Theoretical principles
- Study of energy backflow in unidirectional monochromatic and space-time waves
- Spectrally recycling space-time wave packets