By adapting the Madelung-Bohm formalism to paraxial wave propagation we show, by using Ermakov-Lewis techniques, that the Gouy phase is related to the form of the phase chosen in order to produce a Gaussian function as a propagated field. For this, we introduce a quantum mechanical invariant, that it is explicitly time dependent despite the fact that the Hamiltonian is itself time-independent. We finally show that the effective Bohm {\it index of refraction} generates a GRIN medium that produces the focusing needed for the Gouy phase
When we create “structured light” with single-frequency (laser) illumination, it is straightforward ...
Summarization: We consider the case of Laguerre-Gaussian (LG) light with high values of radial index...
The effect of the Gouy phase, which is one of the geometrical phases of photons, is observed through...
The propagation of gaussian packets of free particles presents a phase term that we identify analogo...
We investigate the Gouy phase shift for full-aperture waves converging to a focal point from all dir...
We theoretically analyze the influence of the Gouy phase shift on the nonlinear interaction between ...
The Gouy phase, sometimes called the phase anomaly, is the remarkable effect that in the region of f...
It is shown how the linear Gouy phase of an ideal nondiffracting beam of ±(k-kz)z form, with kz bein...
The Gouy phase, sometimes called the focal phase anomaly, is the curious effect that in the vicinity...
We are accustomed to think the phase of single particle states does not matter. After all, the phase...
A formulation is proposed for the behavior of a particle in a box based on two assumptions: (1) part...
The results of a theoretical and experimental investigation of the Gouy effect in Bessel beams are p...
t is shown how the linear Gouy phase of an ideal nondiffracting beam of ±(k-kz)z form, with kz being...
One of the most poorly understood subjects in physical optics is the origin of the Gouy phase (somet...
In two recent papers, O. Entin-Wohlman et al. [cond-mat/0109328 (unpublished) and (private communica...
When we create “structured light” with single-frequency (laser) illumination, it is straightforward ...
Summarization: We consider the case of Laguerre-Gaussian (LG) light with high values of radial index...
The effect of the Gouy phase, which is one of the geometrical phases of photons, is observed through...
The propagation of gaussian packets of free particles presents a phase term that we identify analogo...
We investigate the Gouy phase shift for full-aperture waves converging to a focal point from all dir...
We theoretically analyze the influence of the Gouy phase shift on the nonlinear interaction between ...
The Gouy phase, sometimes called the phase anomaly, is the remarkable effect that in the region of f...
It is shown how the linear Gouy phase of an ideal nondiffracting beam of ±(k-kz)z form, with kz bein...
The Gouy phase, sometimes called the focal phase anomaly, is the curious effect that in the vicinity...
We are accustomed to think the phase of single particle states does not matter. After all, the phase...
A formulation is proposed for the behavior of a particle in a box based on two assumptions: (1) part...
The results of a theoretical and experimental investigation of the Gouy effect in Bessel beams are p...
t is shown how the linear Gouy phase of an ideal nondiffracting beam of ±(k-kz)z form, with kz being...
One of the most poorly understood subjects in physical optics is the origin of the Gouy phase (somet...
In two recent papers, O. Entin-Wohlman et al. [cond-mat/0109328 (unpublished) and (private communica...
When we create “structured light” with single-frequency (laser) illumination, it is straightforward ...
Summarization: We consider the case of Laguerre-Gaussian (LG) light with high values of radial index...
The effect of the Gouy phase, which is one of the geometrical phases of photons, is observed through...