Spontaneous Parametric Downconversion: Difference between revisions

From APL_wiki
Jump to navigation Jump to search
Wikiuser (talk | contribs)
Wikiuser (talk | contribs)
Line 5: Line 5:
= Physics Background =
= Physics Background =


Spontaneous parametric downconversion (SPDC) is a non-linear optical process that takes place with the assistance of specially-engineered optical crystals. These optical crystals are designed with specific index of refraction properties along given crystalline axis. When light of a specific frequency is incident upon the lattice, it will experience preferential absorption and re-emission as a result of this design. This will result in an overall "splitting" of one incident light beam into two, at some well-defined angle. The net effect of this can be seen by looking at the bulk beam properties.


In a project-specific example, consider a 405nm wavelength laser is incident upon a downconversion crystal. The net effect of the crystal refraction and re-emission results in two output beams of 810nm. The incident beam has been "downconverted" to two output beams of half-the energy and twice the wavelength. See figure 1.
[fig 1 SPDC diagram]


= Experimental Setup =
= Experimental Setup =

Revision as of 19:09, 20 March 2015

Quantum Optics and Spontaneous Parametric Downconversion

The goal of this project is to use a series table-top laser-based optics experiments to investigate various quantum mechanical phenomena. These include, but are not limited to: quantization of the electric field (proof of the existence of photons), single-photon interference, violation of Bell inequalities, and quantum information measurement effects.

Physics Background

Spontaneous parametric downconversion (SPDC) is a non-linear optical process that takes place with the assistance of specially-engineered optical crystals. These optical crystals are designed with specific index of refraction properties along given crystalline axis. When light of a specific frequency is incident upon the lattice, it will experience preferential absorption and re-emission as a result of this design. This will result in an overall "splitting" of one incident light beam into two, at some well-defined angle. The net effect of this can be seen by looking at the bulk beam properties.

In a project-specific example, consider a 405nm wavelength laser is incident upon a downconversion crystal. The net effect of the crystal refraction and re-emission results in two output beams of 810nm. The incident beam has been "downconverted" to two output beams of half-the energy and twice the wavelength. See figure 1.

[fig 1 SPDC diagram]

Experimental Setup

Results

External Resources

References

SPDC Web Page