Beating is a simple physical phenomenon known for long in the context of sound waves but remained surprisingly unexplored for light waves. When two monochromatic optical beams of different frequencies and states of polarization interfere, the polarization state of the superposition field exhibits temporal periodic variation-polarization beating. In this work, we reveal a foundational and elegant phase structure underlying such polarization beating. We show that the phase difference over a single beating period decomposes into the Pancharatnam-Berry geometric phase and a dynamical phase of which the former depends exclusively on the intensities and polarization states of the interfering beams whereas the sum of the phases is determined solel...
We consider temporal interference of two stationary, quasi-monochromatic, partially polarized optica...
We present a study of geometric phases in classical wave and polarization optics using the basic mat...
The geometric phase is usually treated as a quantity modulo 2\pi, a convention carried over from ear...
Beating is a simple physical phenomenon known for long in the context of sound waves but remained su...
If the state of polarization of a monochromatic light beam is changed in a cyclical manner, the beam...
17 pages, 4 figures, accepted for publication in Physica EInternational audienceWe use the quantum k...
If the state of polarization of a monochromatic light beam is changed in a cyclical manner, the beam...
We study the properties of optical fields created by interfering polychromatic stationary waves that...
We study the properties of optical fields created by interfering polychromatic stationary waves that...
We present a novel setup that allows the observation of the geometric phase that accompanies polariz...
In this study, we observe the nonlinear behavior of the two-photon geometric phase for polarization ...
Restricted Access.To demonstrate the Pancharatnam phase as a geometric (Berry's) phase, each polariz...
PosterInternational audienceThe geometric phase was first anticipated 1956 by Pancharatnam, in the c...
Geometric phase is a unifying and central concept in physics, including optics. As a matter of fact,...
We consider temporal interference of two stationary, quasi-monochromatic, partially polarized optica...
We consider temporal interference of two stationary, quasi-monochromatic, partially polarized optica...
We present a study of geometric phases in classical wave and polarization optics using the basic mat...
The geometric phase is usually treated as a quantity modulo 2\pi, a convention carried over from ear...
Beating is a simple physical phenomenon known for long in the context of sound waves but remained su...
If the state of polarization of a monochromatic light beam is changed in a cyclical manner, the beam...
17 pages, 4 figures, accepted for publication in Physica EInternational audienceWe use the quantum k...
If the state of polarization of a monochromatic light beam is changed in a cyclical manner, the beam...
We study the properties of optical fields created by interfering polychromatic stationary waves that...
We study the properties of optical fields created by interfering polychromatic stationary waves that...
We present a novel setup that allows the observation of the geometric phase that accompanies polariz...
In this study, we observe the nonlinear behavior of the two-photon geometric phase for polarization ...
Restricted Access.To demonstrate the Pancharatnam phase as a geometric (Berry's) phase, each polariz...
PosterInternational audienceThe geometric phase was first anticipated 1956 by Pancharatnam, in the c...
Geometric phase is a unifying and central concept in physics, including optics. As a matter of fact,...
We consider temporal interference of two stationary, quasi-monochromatic, partially polarized optica...
We consider temporal interference of two stationary, quasi-monochromatic, partially polarized optica...
We present a study of geometric phases in classical wave and polarization optics using the basic mat...
The geometric phase is usually treated as a quantity modulo 2\pi, a convention carried over from ear...