I derive a temporally propagated uni-directional optical pulse equation valid in the few cycle limit. Temporal propagation is advantageous because it naturally preserves causality, unlike the competing spatially propagated models. The exact coupled bi-directional equations that this approach generates can be efficiently approximated down to a uni-directional form in cases where an optical pulse changes little over one optical cycle. They also permit a direct term-to-term comparison of the exact bi-directional theory with its corresponding approximate uni-directional theory. Notably, temporal propagation handles dispersion in a different way, and this difference serves to highlight existing approximations inherent in spatially propagated tre...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 1997.In this thesis the results of a ...
Recent experimental realizations of single-cycle pulses in the terahertz, infrared, and optical regi...
A Hamiltonian framework is developed for a sequence of ultrashort optical pulses propagating in a no...
We discuss state-of-art approaches to modeling of propagation of ultrashort optical pulses in one an...
We consider optical pulse propagation in one spatial direction and observe that for lossless media, ...
We present the first detailed account of modelling pulses in Helmholtz-type nonlinear systems with b...
The evolution of acoustic waves can be evaluated in two ways: either as a temporal, or a spatial pro...
Thesis (Ph. D.)--University of Rochester. College of Engineering and Applied Science. Institute of O...
In a recent publication, Christian et al. [Phys. Rev. Lett. vol. 108, art. no. 034101 (2012)] develo...
We demonstrate that ultrashort optical pulses propagating in a nonlinear dispersive medium are natur...
AbstractIn this paper we consider the propagation of optical pulses in dielectric media with nontriv...
The objective of this work is analyze the dispersion in linear and nonlinear regime and it study as...
We review and extend the analogies between Gaussian pulse propagation and Gaussian beam diffraction....
A generic nonparaxial model for pulse envelopes is presented. Classic Schro¨dinger-type description...
Propagation of ultrashort pulses in dispersing media and optical fibers is calculated and analyzed. ...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 1997.In this thesis the results of a ...
Recent experimental realizations of single-cycle pulses in the terahertz, infrared, and optical regi...
A Hamiltonian framework is developed for a sequence of ultrashort optical pulses propagating in a no...
We discuss state-of-art approaches to modeling of propagation of ultrashort optical pulses in one an...
We consider optical pulse propagation in one spatial direction and observe that for lossless media, ...
We present the first detailed account of modelling pulses in Helmholtz-type nonlinear systems with b...
The evolution of acoustic waves can be evaluated in two ways: either as a temporal, or a spatial pro...
Thesis (Ph. D.)--University of Rochester. College of Engineering and Applied Science. Institute of O...
In a recent publication, Christian et al. [Phys. Rev. Lett. vol. 108, art. no. 034101 (2012)] develo...
We demonstrate that ultrashort optical pulses propagating in a nonlinear dispersive medium are natur...
AbstractIn this paper we consider the propagation of optical pulses in dielectric media with nontriv...
The objective of this work is analyze the dispersion in linear and nonlinear regime and it study as...
We review and extend the analogies between Gaussian pulse propagation and Gaussian beam diffraction....
A generic nonparaxial model for pulse envelopes is presented. Classic Schro¨dinger-type description...
Propagation of ultrashort pulses in dispersing media and optical fibers is calculated and analyzed. ...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 1997.In this thesis the results of a ...
Recent experimental realizations of single-cycle pulses in the terahertz, infrared, and optical regi...
A Hamiltonian framework is developed for a sequence of ultrashort optical pulses propagating in a no...